Google scholar profile

Books and book chapters

  1. B. Fultz, T. Kelley, J. Lin, J. Lee, O. Delaire, M. Kresch, M. McKerns, and M. Aivazis, Experimental inelastic neutron scattering: introduction to DANSE, 2009. 
  2. B. Fultz and J. Lin, “Mössbauer diffractometry,” in Material research in atomic scale by mössbauer spectroscopy, Springer, Dordrecht, 2003, p. 285–295. 
  3. J. Lin, “Mossbauer diffractometry: principles, practice, and an application to a study of chemical order in iron aluminide,” PhD Thesis, California Institute of Technology, 2004.

Published Journal Papers

  • [DOI] I. I. Al-Qasir, Y. Cheng, J. Y. Y. Lin, A. A. Campbell, G. Sala, K. Ramic, F. F. Islam, A. Qteish, B. Marsden, D. L. Abernathy, and M. B. Stone, “Neutron thermalization in nuclear graphite: a modern story of a classic moderator,” Annals of nuclear energy, vol. 161, p. 108437, 2021.
    [Bibtex]
    @article{Al_Qasir_2021,
    added-at = {2021-08-17T16:15:21.000+0200},
    author = {Al-Qasir, Iyad I. and Cheng, Yongqiang and Lin, Jiao Y.Y. and Campbell, Anne A. and Sala, G. and Ramic, Kemal and Islam, Fahima F. and Qteish, Abdallah and Marsden, Barry and Abernathy, Douglas L. and Stone, Matthew B.},
    biburl = {https://www.bibsonomy.org/bibtex/21daedfba394aebdfd4fd0ffee71ce4a7/linjiao},
    doi = {10.1016/j.anucene.2021.108437},
    interhash = {1741a6b429f36f2401bb45495db0950b},
    intrahash = {1daedfba394aebdfd4fd0ffee71ce4a7},
    journal = {Annals of Nuclear Energy},
    keywords = {myown neutron},
    month = oct,
    pages = 108437,
    publisher = {Elsevier {BV}},
    timestamp = {2021-08-17T16:15:21.000+0200},
    title = {Neutron thermalization in nuclear graphite: A modern story of a classic moderator},
    url = {https://doi.org/10.1016%2Fj.anucene.2021.108437},
    volume = 161,
    year = 2021
    }
  • [DOI] F. F. Islam, B. Haberl, J. Y. Y. Lin, D. C. Anderson, J. J. Molaison, and G. E. Granroth, “Novel data analysis method for obtaining better performance from a complex 3d-printed collimator,” Nuclear instruments and methods in physics research section a: accelerators, spectrometers, detectors and associated equipment, vol. 1014, p. 165646, 2021.
    [Bibtex]
    @article{Islam_2021,
    added-at = {2021-08-17T16:17:27.000+0200},
    author = {Islam, Fahima F. and Haberl, Bianca and Lin, Jiao Y.Y. and Anderson, David C. and Molaison, Jamie J. and Granroth, Garrett E.},
    biburl = {https://www.bibsonomy.org/bibtex/2ad4fc59b16b8763ac618171c697bd2fd/linjiao},
    doi = {10.1016/j.nima.2021.165646},
    interhash = {42e1ea9429683d25a9c575805f49bc54},
    intrahash = {ad4fc59b16b8763ac618171c697bd2fd},
    journal = {Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment},
    keywords = {myown neutron},
    month = oct,
    pages = 165646,
    publisher = {Elsevier {BV}},
    timestamp = {2021-08-17T16:17:27.000+0200},
    title = {Novel data analysis method for obtaining better performance from a complex 3D-printed collimator},
    url = {https://doi.org/10.1016%2Fj.nima.2021.165646},
    volume = 1014,
    year = 2021
    }
  • [DOI] H. Z. Bilheux, M. Cekanova, J. M. Warren, M. J. Meagher, R. D. Ross, J. C. Bilheux, S. Venkatakrishnan, J. Y. Y. Lin, Y. Zhang, M. R. Pearson, and E. Stringfellow, “Neutron radiography and computed tomography of biological systems at the oak ridge national laboratory\textquotesingles high flux isotope reactor,” Journal of visualized experiments, iss. 171, 2021.
    [Bibtex]
    @article{Bilheux_2021,
    added-at = {2021-08-17T16:18:39.000+0200},
    author = {Bilheux, Hassina Z. and Cekanova, Maria and Warren, Jeffrey M. and Meagher, Matthew J. and Ross, Ryan D. and Bilheux, Jean C. and Venkatakrishnan, Singanallur and Lin, Jiao Y.Y. and Zhang, Yuxuan and Pearson, Matthew R. and Stringfellow, Erik},
    biburl = {https://www.bibsonomy.org/bibtex/21b03be6c19d63e4781151c753a3f6c8c/linjiao},
    doi = {10.3791/61688},
    interhash = {58bf00d2ca78cf09cd5fb40f97c1c771},
    intrahash = {1b03be6c19d63e4781151c753a3f6c8c},
    journal = {Journal of Visualized Experiments},
    keywords = {myown neutron},
    month = may,
    number = 171,
    publisher = {{MyJove} Corporation},
    timestamp = {2021-08-17T16:18:39.000+0200},
    title = {Neutron Radiography and Computed Tomography of Biological Systems at the Oak Ridge National Laboratory{\textquotesingle}s High Flux Isotope Reactor},
    url = {https://doi.org/10.3791%2F61688},
    year = 2021
    }
  • [DOI] J. L. Niedziela, D. Bansal, J. Ding, T. Lanigan-Atkins, C. Li, A. F. May, H. Wang, J. Y. Y. Lin, D. L. Abernathy, G. Ehlers, A. Huq, D. Parshall, J. W. Lynn, and O. Delaire, “Controlling phonon lifetimes via sublattice disordering in $\mathrm{Ag}\mathrm{Bi}{\mathrm{Se}}_{2}$,” Phys. rev. materials, vol. 4, iss. 10, p. 105402, 2020.
    [Bibtex]
    @article{PhysRevMaterials.4.105402,
    added-at = {2021-08-17T16:21:15.000+0200},
    author = {Niedziela, J. L. and Bansal, D. and Ding, J. and Lanigan-Atkins, T. and Li, C. and May, A. F. and Wang, H. and Lin, J. Y. Y. and Abernathy, D. L. and Ehlers, G. and Huq, A. and Parshall, D. and Lynn, J. W. and Delaire, O.},
    biburl = {https://www.bibsonomy.org/bibtex/25c868f2a2139dace73f047ded7e5ebd3/linjiao},
    doi = {10.1103/PhysRevMaterials.4.105402},
    interhash = {a8f5f689e6a07e440c1cff076c46d6d7},
    intrahash = {5c868f2a2139dace73f047ded7e5ebd3},
    journal = {Phys. Rev. Materials},
    keywords = {myown neutron},
    month = oct,
    number = 10,
    numpages = {13},
    pages = 105402,
    publisher = {American Physical Society},
    timestamp = {2021-08-17T16:21:15.000+0200},
    title = {Controlling phonon lifetimes via sublattice disordering in $\mathrm{Ag}\mathrm{Bi}{\mathrm{Se}}_{2}$},
    url = {https://link.aps.org/doi/10.1103/PhysRevMaterials.4.105402},
    volume = 4,
    year = 2020
    }
  • [DOI] F. Islam, J. Lin, T. Huegle, I. Lumsden, D. Anderson, A. Elliott, B. Haberl, and G. Granroth, “Computational optimization of a 3d printed collimator,” Journal of neutron research, vol. 22, iss. 2–3, p. 155–168, 2020.
    [Bibtex]
    @article{Islam_Lin_Huegle_Lumsden_Anderson_Elliott_Haberl_Granroth_2020,
    abstractnote = {This contribution describes the computational methodology behind an optimization procedure for a scattered beam collimator. The workflow includes producing a file that can be manufactured via additive methods. A conical collimator, optimized for neutron diffraction experiments in a high pressure clamp cell, is presented as an example. In such a case the scattering from the sample is much smaller than that of the pressure cell. Monte Carlo Ray tracing in MCViNE was used to model scattering from a Si powder sample and the cell. A collimator was inserted into the simulation and the number and size of channels were optimized to maximize the rejection of the parasitic signal coming from the complex sample environment. Constraints, provided by the additive manufacturing process as well as a specific neutron diffractometer, were also included in the optimization. The source code and the tutorials are available in c3dp (Islam (2019)).},
    added-at = {2021-08-17T16:26:01.000+0200},
    author = {Islam, Fahima and Lin, Jiao and Huegle, Thomas and Lumsden, Ian and Anderson, David and Elliott, Amy and Haberl, Bianca and Granroth, Garrett},
    biburl = {https://www.bibsonomy.org/bibtex/28b3cbbdf1c1d2f05d2c08c9412ad3ff9/linjiao},
    doi = {10.3233/JNR-190139},
    interhash = {586ce84010fa572c3fd968e2bc1f0e27},
    intrahash = {8b3cbbdf1c1d2f05d2c08c9412ad3ff9},
    issn = {14772655, 10238166},
    journal = {Journal of Neutron Research},
    keywords = {myown neutron},
    month = oct,
    number = {2–3},
    pages = {155–168},
    place = {NL},
    publisher = {IOS Press},
    timestamp = {2021-08-17T16:26:01.000+0200},
    title = {Computational optimization of a 3D printed collimator},
    url = {https://doi.org/10.3233/JNR-190139},
    volume = 22,
    year = 2020
    }
  • [DOI] I. I. Al-Qasir, A. A. Campbell, G. Sala, J. Y. Y. Lin, Y. Cheng, F. F. Islam, D. L. Abernathy, and M. B. Stone, “Vacancy-driven variations in the phonon density of states of fast neutron irradiated nuclear graphite,” Carbon, 2020.
    [Bibtex]
    @article{ALQASIR2020,
    abstract = {Research examining radiation damage and its effects in graphite began in the 1940's during the development of moderated nuclear reactors. Interest in this topic is expanding because of emerging applications associated with fullerenes and carbon nanostructures as well as its long-standing use as a fission moderator. In this work, we report the measurements of the full phonon density of states of irradiated nuclear graphite using inelastic neutron scattering experiments at room temperature. The samples were previously exposed to different levels of neutron doses and irradiation temperatures. The phonon density of states of perfect and defected graphite supercells including different configurations of vacancies and interstitials were calculated using first-principles direct method. Despite high neutron irradiation doses, the scattering measurements show that the induced damage is localized, and the layered structure is preserved. A comparison of the measured phonon densities of states of irradiated samples with those calculated of defected supercells indicates that the main changes observed are mainly attributed to formation of vacancies.},
    added-at = {2020-05-23T18:02:50.000+0200},
    author = {Al-Qasir, Iyad I. and Campbell, Anne A. and Sala, Gabriele and Lin, Jiao Y.Y. and Cheng, Yongqiang and Islam, Fahima F. and Abernathy, Douglas L. and Stone, Matthew B.},
    biburl = {https://www.bibsonomy.org/bibtex/243ffe39d0771692a38dd0b0253a79567/linjiao},
    description = {Vacancy-driven variations in the phonon density of states of fast neutron irradiated nuclear graphite - ScienceDirect},
    doi = {https://doi.org/10.1016/j.carbon.2020.05.027},
    interhash = {97d1cca392cd9b88b4805954e452e031},
    intrahash = {43ffe39d0771692a38dd0b0253a79567},
    issn = {0008-6223},
    journal = {Carbon},
    keywords = {neutron},
    timestamp = {2020-05-23T18:02:50.000+0200},
    title = {Vacancy-driven variations in the phonon density of states of fast neutron irradiated nuclear graphite},
    url = {http://www.sciencedirect.com/science/article/pii/S0008622320304681},
    year = 2020
    }
  • [DOI] J. Bilheux, J. Y. Y. Lin, and H. Z. Bilheux, “Jupyter notebooks for neutron radiography data processing and analysis,” in Neutron radiography – WCNR-11, 2020.
    [Bibtex]
    @inproceedings{2020,
    added-at = {2021-08-17T16:25:00.000+0200},
    author = {Bilheux, Jean-Christophe and Lin, Jiao Y Y and Bilheux, Hassina Z},
    biburl = {https://www.bibsonomy.org/bibtex/28e8da79b93d08cb1245f0b3b956a28f4/linjiao},
    booktitle = {Neutron Radiography - {WCNR}-11},
    doi = {10.21741/9781644900574-31},
    interhash = {c45202317810c258cf1b61f060add0e1},
    intrahash = {8e8da79b93d08cb1245f0b3b956a28f4},
    keywords = {myown neutron},
    month = jan,
    publisher = {Materials Research Forum {LLC}},
    timestamp = {2021-08-17T16:25:00.000+0200},
    title = {Jupyter Notebooks for Neutron Radiography Data Processing and Analysis},
    url = {https://doi.org/10.21741%2F9781644900574-31},
    year = 2020
    }
  • [DOI] D. S. Kim, O. Hellman, N. Shulumba, C. N. Saunders, J. Y. Y. Lin, H. L. Smith, J. E. Herriman, J. L. Niedziela, D. L. Abernathy, C. W. Li, and B. Fultz, “Temperature-dependent phonon lifetimes and thermal conductivity of silicon by inelastic neutron scattering and ab initio calculations,” Phys. rev. b, vol. 102, iss. 17, p. 174311, 2020.
    [Bibtex]
    @article{PhysRevB.102.174311,
    added-at = {2021-08-17T16:20:08.000+0200},
    author = {Kim, D. S. and Hellman, O. and Shulumba, N. and Saunders, C. N. and Lin, J. Y. Y. and Smith, H. L. and Herriman, J. E. and Niedziela, J. L. and Abernathy, D. L. and Li, C. W. and Fultz, B.},
    biburl = {https://www.bibsonomy.org/bibtex/2b3a152a6fb3513e547661065e12b2781/linjiao},
    doi = {10.1103/PhysRevB.102.174311},
    interhash = {17350d30b2999022b1e911624884a78a},
    intrahash = {b3a152a6fb3513e547661065e12b2781},
    journal = {Phys. Rev. B},
    keywords = {myown neutron},
    month = nov,
    number = 17,
    numpages = {10},
    pages = 174311,
    publisher = {American Physical Society},
    timestamp = {2021-08-17T16:20:08.000+0200},
    title = {Temperature-dependent phonon lifetimes and thermal conductivity of silicon by inelastic neutron scattering and ab initio calculations},
    url = {https://link.aps.org/doi/10.1103/PhysRevB.102.174311},
    volume = 102,
    year = 2020
    }
  • [DOI] Y. Chen, J. Gaudet, S. Dasgupta, G. G. Marcus, J. Lin, T. Chen, T. Tomita, M. Ikhlas, Y. Zhao, W. C. Chen, M. B. Stone, O. Tchernyshyov, S. Nakatsuji, and C. Broholm, “Antichiral spin order, its soft modes, and their hybridization with phonons in the topological semimetal ${\mathrm{Mn}}_{3}\mathrm{Ge}$,” Phys. rev. b, vol. 102, iss. 5, p. 54403, 2020.
    [Bibtex]
    @article{PhysRevB.102.054403,
    added-at = {2021-08-17T16:22:52.000+0200},
    author = {Chen, Y. and Gaudet, J. and Dasgupta, S. and Marcus, G. G. and Lin, J. and Chen, T. and Tomita, T. and Ikhlas, M. and Zhao, Y. and Chen, W. C. and Stone, M. B. and Tchernyshyov, O. and Nakatsuji, S. and Broholm, C.},
    biburl = {https://www.bibsonomy.org/bibtex/2ac6806bb67965ed855a4bc224136ce67/linjiao},
    doi = {10.1103/PhysRevB.102.054403},
    interhash = {7aec1276e7498ef9c757491592e861c7},
    intrahash = {ac6806bb67965ed855a4bc224136ce67},
    journal = {Phys. Rev. B},
    keywords = {myown neutron},
    month = aug,
    number = 5,
    numpages = {15},
    pages = 054403,
    publisher = {American Physical Society},
    timestamp = {2021-08-17T16:22:52.000+0200},
    title = {Antichiral spin order, its soft modes, and their hybridization with phonons in the topological semimetal ${\mathrm{Mn}}_{3}\mathrm{Ge}$},
    url = {https://link.aps.org/doi/10.1103/PhysRevB.102.054403},
    volume = 102,
    year = 2020
    }
  • [DOI] T. Lanigan-Atkins, S. Yang, J. L. Niedziela, D. Bansal, A. F. May, A. A. Puretzky, J. Y. Y. Lin, D. M. Pajerowski, T. Hong, S. Chi, G. Ehlers, and O. Delaire, “Extended anharmonic collapse of phonon dispersions in SnS and SnSe,” Nature communications, vol. 11, iss. 1, 2020.
    [Bibtex]
    @article{Lanigan_Atkins_2020,
    added-at = {2021-08-17T16:22:00.000+0200},
    author = {Lanigan-Atkins, T. and Yang, S. and Niedziela, J. L. and Bansal, D. and May, A. F. and Puretzky, A. A. and Lin, J. Y. Y. and Pajerowski, D. M. and Hong, T. and Chi, S. and Ehlers, G. and Delaire, O.},
    biburl = {https://www.bibsonomy.org/bibtex/27ed01f0e62afe79e27e922586b8d0fbf/linjiao},
    doi = {10.1038/s41467-020-18121-4},
    interhash = {b7d0852a8bcc02bac22b051396133cd0},
    intrahash = {7ed01f0e62afe79e27e922586b8d0fbf},
    journal = {Nature Communications},
    keywords = {myown neutron},
    month = sep,
    number = 1,
    publisher = {Springer Science and Business Media {LLC}},
    timestamp = {2021-08-17T16:22:00.000+0200},
    title = {Extended anharmonic collapse of phonon dispersions in {SnS} and {SnSe}},
    url = {https://doi.org/10.1038%2Fs41467-020-18121-4},
    volume = 11,
    year = 2020
    }
  • [DOI] F. Islam, J. Y. Y. Lin, R. Archibald, D. L. Abernathy, I. Al-Qasir, A. A. Campbell, M. B. Stone, and G. E. Granroth, “Super-resolution energy spectra from neutron direct-geometry spectrometers,” Review of scientific instruments, vol. 90, iss. 10, p. 105109–, 2019.
    [Bibtex]
    @article{islam2019superresolution,
    abstract = {Neutron direct-geometry time-of-flight chopper spectroscopy is instrumental in studying fundamental excitations of vibrational and/or magnetic origin. We report here that techniques in super-resolu...},
    added-at = {2020-05-23T17:56:27.000+0200},
    author = {Islam, Fahima and Lin, Jiao Y. Y. and Archibald, Richard and Abernathy, Douglas L. and Al-Qasir, Iyad and Campbell, Anne A. and Stone, Matthew B. and Granroth, Garrett E.},
    biburl = {https://www.bibsonomy.org/bibtex/2bf87b002e87ca9ffabe92dfabebe71c5/linjiao},
    booktitle = {Review of Scientific Instruments},
    comment = {doi: 10.1063/1.5116147},
    description = {Super-resolution energy spectra from neutron direct-geometry spectrometers: Review of Scientific Instruments: Vol 90, No 10},
    doi = {10.1063/1.5116147},
    interhash = {d2325e5d3a3ae2173b7ad41e3ab7f307},
    intrahash = {bf87b002e87ca9ffabe92dfabebe71c5},
    issn = {00346748},
    journal = {Review of Scientific Instruments},
    keywords = {neutron},
    month = oct,
    number = 10,
    pages = {105109--},
    publisher = {American Institute of Physics},
    timestamp = {2020-05-23T17:56:27.000+0200},
    title = {Super-resolution energy spectra from neutron direct-geometry spectrometers},
    url = {https://doi.org/10.1063/1.5116147},
    volume = 90,
    year = 2019
    }
  • [DOI] J. Bilheux, H. Bilheux, J. Lin, I. Lumsden, and Y. Zhang, “Neutron imaging analysis using jupyter python notebook,” Journal of physics communications, vol. 3, iss. 8, p. 83001, 2019.
    [Bibtex]
    @article{Bilheux_2019,
    abstract = {Independently of the image modality (x-rays, neutrons, etc), image data analysis requires normalization, a preprocessing step. While the normalization can sometimes easily be generalized, the analysis is, in most cases, specific to an experiment and a sample. Although many tools (MATLAB, ImageJ, VG Studio…) offer a large collection of pre-programmed image analysis tools, they usually require a learning step that can be lengthy depending on the skills of the end user. We have implemented Jupyter Python notebooks to allow easy and straightforward data analysis, along with live interaction with the data. Jupyter notebooks require little programming knowledge and the steep learning curve is bypassed. Most importantly, each notebook can be tailored to a specific experiment and sample with minimized effort. Here, we present the pros and cons of the main methods to analyse data and show the reason why we have found that Jupyter Python notebooks are well suited for imaging data processing, visualization and analysis.},
    added-at = {2019-09-08T16:21:29.000+0200},
    author = {Bilheux, Jean-Christophe and Bilheux, Hassina and Lin, Jiao and Lumsden, Ian and Zhang, Yuxuan},
    biburl = {https://www.bibsonomy.org/bibtex/2b4fa1f0a4eba9b4101b9a187742ae9bb/linjiao},
    doi = {10.1088/2399-6528/ab3bea},
    interhash = {950c4e0200b6581a827025e8f74c5fd9},
    intrahash = {b4fa1f0a4eba9b4101b9a187742ae9bb},
    journal = {Journal of Physics Communications},
    keywords = {imported},
    month = aug,
    number = 8,
    pages = 083001,
    publisher = {{IOP} Publishing},
    timestamp = {2019-09-08T16:21:50.000+0200},
    title = {Neutron imaging analysis using jupyter Python notebook},
    url = {https://doi.org/10.1088%2F2399-6528%2Fab3bea},
    volume = 3,
    year = 2019
    }
  • [DOI] J. Y. Y. Lin, F. Islam, G. Sala, I. Lumsden, H. Smith, M. Doucet, M. B. Stone, D. L. Abernathy, G. Ehlers, J. F. Ankner, and G. E. Granroth, “Recent developments of MCViNE and its applications at SNS,” Journal of physics communications, vol. 3, iss. 8, p. 85005, 2019.
    [Bibtex]
    @article{Lin_mcvine_2019,
    abstract = {MCViNE is an open source, object-oriented Monte Carlo neutron ray-tracing simulation software package. Its design allows for flexible, hierarchical representations of sophisticated instrument components such as detector systems, and samples with a variety of shapes and scattering kernels. Recently this flexible design has enabled several applications of MCViNE simulations at the Spallation Neutron Source (SNS) at Oak Ridge National Lab, including assisting design of neutron instruments at the second target station and design of novel sample environments, as well as studying effects of instrument resolution and multiple scattering. Here we provide an overview of the recent developments and new features of MCViNE since its initial introduction (Jiao et al 2016 Nucl. Instrum. Methods Phys. Res., Sect. A 810, 86–99), and some example applications.},
    added-at = {2019-09-08T16:23:26.000+0200},
    author = {Lin, Jiao Y Y and Islam, Fahima and Sala, Gabriele and Lumsden, Ian and Smith, Hillary and Doucet, Mathieu and Stone, Matthew B and Abernathy, Douglas L and Ehlers, Georg and Ankner, John F and Granroth, Garrett E},
    biburl = {https://www.bibsonomy.org/bibtex/2e5c388046b698cfc688bc192418ff8c4/linjiao},
    doi = {10.1088/2399-6528/ab3622},
    interhash = {7c4bcc11a8d67d104fdc78e8d916e541},
    intrahash = {e5c388046b698cfc688bc192418ff8c4},
    journal = {Journal of Physics Communications},
    keywords = {imported},
    month = aug,
    number = 8,
    pages = 085005,
    publisher = {{IOP} Publishing},
    timestamp = {2019-09-08T16:23:26.000+0200},
    title = {Recent developments of {MCViNE} and its applications at {SNS}},
    url = {https://doi.org/10.1088%2F2399-6528%2Fab3622},
    volume = 3,
    year = 2019
    }
  • J. Leiner, H. O. Jeschke, R. Valent{‘i}, S. Zhang, A. Savici, J. Lin, M. Stone, M. Lumsden, J. Hong, O. Delaire, and others, “Frustrated magnetism in mott insulating (v 1- x cr x) 2 o 3,” Physical review x, vol. 9, iss. 1, p. 11035, 2019.
    [Bibtex]
    @article{leiner2019frustrated,
    added-at = {2019-06-15T05:19:47.000+0200},
    author = {Leiner, JC and Jeschke, Harald Olaf and Valent{\'\i}, R and Zhang, S and Savici, AT and Lin, JYY and Stone, MB and Lumsden, MD and Hong, Jiawang and Delaire, O and others},
    biburl = {https://www.bibsonomy.org/bibtex/239108bb052f0caf6e91cf8df2f1c05f1/linjiao},
    interhash = {4446009f2d05d69a8249391b90219076},
    intrahash = {39108bb052f0caf6e91cf8df2f1c05f1},
    journal = {Physical Review X},
    keywords = {imported},
    number = 1,
    pages = 011035,
    publisher = {American Physical Society},
    timestamp = {2019-06-15T05:20:35.000+0200},
    title = {Frustrated Magnetism in Mott Insulating (V 1- x Cr x) 2 O 3},
    volume = 9,
    year = 2019
    }
  • M. Stone, G. Sala, and J. Lin, “Design of a radial collimator for the sequoia direct geometry chopper spectrometer,” Physica b: condensed matter, vol. 564, p. 17–21, 2019.
    [Bibtex]
    @article{stone2019design,
    added-at = {2019-06-15T05:19:47.000+0200},
    author = {Stone, MB and Sala, G and Lin, JYY},
    biburl = {https://www.bibsonomy.org/bibtex/20091c2221df98a34ba97ab09093fab50/linjiao},
    interhash = {9a210bb84e39c75bfb40ec5c7f8d9804},
    intrahash = {0091c2221df98a34ba97ab09093fab50},
    journal = {Physica B: Condensed Matter},
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    intrahash = {2e92b56550a3c425f9acd9cd97d1fbb8},
    journal = {Journal of Physics Communications},
    keywords = {neutron},
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    pages = 103003,
    publisher = {IOP Publishing},
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    title = {An interactive web-based tool to guide the preparation of neutron imaging experiments at oak ridge national laboratory},
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    intrahash = {f4a40628d07182305ba59de4bc8bbb75},
    journal = {Physica B: Condensed Matter},
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    publisher = {North-Holland},
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    journal = {Journal of Open Source Software},
    keywords = {imported},
    number = 21,
    publisher = {Oak Ridge National Lab.(ORNL), Oak Ridge, TN (United States)},
    timestamp = {2019-10-11T20:14:34.000+0200},
    title = {Multiphonon: Phonon Density of States tools for Inelastic Neutron Scattering Powder Data},
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    publisher = {International Union of Crystallography},
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    title = {Conceptual design of CHESS, a new direct-geometry inelastic neutron spectrometer dedicated to studying small samples},
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  • J. L. Niedziela, R. Mills, M. J. Loguillo, H. D. Skorpenske, D. Armitage, H. L. Smith, J. Y. Lin, M. S. Lucas, M. B. Stone, and D. L. Abernathy, “Design and operating characteristic of a vacuum furnace for time-of-flight inelastic neutron scattering measurements,” Review of scientific instruments, vol. 88, iss. 10, p. 105116, 2017.
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  • G. Song, J. Lin, J. Bilheux, Q. Xie, L. Santodonato, J. Molaison, H. Skorpenske, A. M Dos Santos, C. Tulk, K. An, and others, “Characterization of crystallographic structures using bragg-edge neutron imaging at the spallation neutron source,” Journal of imaging, vol. 3, iss. 4, p. 65, 2017.
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  • D. Kim, O. Hellman, J. Herriman, H. Smith, J. Lin, N. Shulumba, J. Niedziela, C. Li, D. Abernathy, and B. Fultz, “Pure phonon anharmonicity and the anomalous thermal expansion of silicon,” , 2016.
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    @article{kim2016pure,
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  • S. Diallo, J. Lin, D. Abernathy, and R. Azuah, “Momentum and energy dependent resolution function of the arcs neutron chopper spectrometer at high momentum transfer: comparing simulation and experiment,” Nuclear instruments and methods in physics research section a: accelerators, spectrometers, detectors and associated equipment, vol. 835, p. 34–41, 2016.
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  • J. Y. Lin, H. L. Smith, G. E. Granroth, D. L. Abernathy, M. D. Lumsden, B. Winn, A. A. Aczel, M. Aivazis, and B. Fultz, “Mcvine–an object oriented monte carlo neutron ray tracing simulation package,” Nuclear instruments and methods in physics research section a: accelerators, spectrometers, detectors and associated equipment, vol. 810, p. 86–99, 2016.
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  • J. Lin, A. A. Aczel, D. L. Abernathy, S. E. Nagler, W. Buyers, and G. E. Granroth, “Using monte carlo ray tracing simulations to model the quantum harmonic oscillator modes observed in uranium nitride,” Physical review b, vol. 89, iss. 14, p. 144302, 2014.
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  • A. D. Christianson, M. D. Lumsden, O. Delaire, M. B. Stone, D. L. Abernathy, M. A. McGuire, A. Sefat, R. Jin, B. C. Sales, D. Mandrus, and others, “Phonon density of states of lafeaso 1- x f x,” Physical review letters, vol. 101, iss. 15, p. 157004, 2008.
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    @article{lin2005long,
    added-at = {2019-06-15T05:19:47.000+0200},
    author = {Lin, Jiao and Monson, Ryan and Fultz, Brent},
    biburl = {https://www.bibsonomy.org/bibtex/2f2acbb2c3b9f0010d9b4f05aac2512c4/linjiao},
    interhash = {561fcd9a8cbe3b44396e56c581fb08eb},
    intrahash = {f2acbb2c3b9f0010d9b4f05aac2512c4},
    journal = {Bulletin of the American Physical Society},
    keywords = {imported},
    publisher = {APS},
    timestamp = {2019-06-15T05:20:35.000+0200},
    title = {Long-range order of defects revealed by Mossbauer powder diffracometry},
    year = 2005
    }
  • C. Chen, W. R. Cook, F. A. Harrison, J. Y. Lin, P. H. Mao, and S. M. Schindler, “Cdznte image detectors for hard-x-ray telescopes,” , 2005.
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    @article{chen2005cdznte,
    added-at = {2019-06-15T05:19:47.000+0200},
    author = {Chen, CM and Cook, Walter R and Harrison, Fiona A and Lin, Jiao YY and Mao, Peter H and Schindler, Stephen M},
    biburl = {https://www.bibsonomy.org/bibtex/2e5bc290131fdbaeeedba4c515ffadbd2/linjiao},
    interhash = {cd63c1eb0de1b6ed667c013c3f27c2b4},
    intrahash = {e5bc290131fdbaeeedba4c515ffadbd2},
    keywords = {imported},
    timestamp = {2019-06-15T05:20:35.000+0200},
    title = {CdZnTe Image Detectors for Hard-X-Ray Telescopes},
    year = 2005
    }
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    @article{fultz2005inelastic,
    added-at = {2019-06-15T05:19:47.000+0200},
    author = {Fultz, Brent and Kelley, Tim and McKerns, Mike and Lin, Jiao and Lee, JaeDong and Aivazis, Michael and Delaire, Olivier},
    biburl = {https://www.bibsonomy.org/bibtex/2cbfe3a5ec26afdce5b71131fba5ceae8/linjiao},
    interhash = {346f77987b288c0b046ac411d7848223},
    intrahash = {cbfe3a5ec26afdce5b71131fba5ceae8},
    keywords = {imported},
    timestamp = {2019-06-15T05:20:35.000+0200},
    title = {Inelastic Neutron Scattering},
    year = 2005
    }
  • C. H. Chen, W. R. Cook, F. A. Harrison, and J. Y. Lin, “Characterization of a large-format, fine-pitch cdznte pixel detector for the heft balloon-borne experiment,” Ieee transactions on nuclear science, vol. 51, iss. 5, p. 2472–2477, 2004.
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    @article{chen2004characterization,
    added-at = {2019-06-15T05:19:47.000+0200},
    author = {Chen, CM Hubert and Cook, Walter R and Harrison, Fiona A and Lin, Jiao YY},
    biburl = {https://www.bibsonomy.org/bibtex/23fbe30cf2b031e6585838fa1dba1404c/linjiao},
    interhash = {d227f0b83b5eea9601e40176f558dd28},
    intrahash = {3fbe30cf2b031e6585838fa1dba1404c},
    journal = {IEEE Transactions on Nuclear Science},
    keywords = {imported},
    number = 5,
    pages = {2472--2477},
    publisher = {IEEE},
    timestamp = {2019-06-15T05:20:35.000+0200},
    title = {Characterization of a large-format, fine-pitch CdZnTe pixel detector for the HEFT balloon-borne experiment},
    volume = 51,
    year = 2004
    }
  • J. Y. Lin and B. Fultz, “Spatial periodicities of defect environments in 57fe3al studied by mössbauer powder diffractometry,” Zeitschrift für kristallographie-crystalline materials, vol. 219, iss. 3, p. 172–178, 2004.
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    @article{lin2004spatial,
    added-at = {2019-06-15T05:19:47.000+0200},
    author = {Lin, Jiao YY and Fultz, Brent},
    biburl = {https://www.bibsonomy.org/bibtex/24c2b748445cd7ed899dd21312f2b8f59/linjiao},
    interhash = {1ce46c1834fecf946fd5aced29db63a3},
    intrahash = {4c2b748445cd7ed899dd21312f2b8f59},
    journal = {Zeitschrift f{\"u}r Kristallographie-Crystalline Materials},
    keywords = {imported},
    number = 3,
    pages = {172--178},
    publisher = {De Gruyter Oldenbourg},
    timestamp = {2019-06-15T05:20:35.000+0200},
    title = {Spatial periodicities of defect environments in 57Fe3Al studied by M{\"o}ssbauer powder diffractometry},
    volume = 219,
    year = 2004
    }
  • J. Lin, “Mossbauer diffractometry: principles, practice, and an application to a study of chemical order in iron aluminide,” PhD Thesis, 2004.
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    @phdthesis{lin2004mossbauer,
    added-at = {2019-06-15T05:19:47.000+0200},
    author = {Lin, Jiao},
    biburl = {https://www.bibsonomy.org/bibtex/24a664b8fe275463b0439ffa39bf00735/linjiao},
    interhash = {10bcce19d6fd820a247a865cf63988bb},
    intrahash = {4a664b8fe275463b0439ffa39bf00735},
    keywords = {imported},
    school = {California Institute of Technology},
    timestamp = {2019-06-15T05:20:35.000+0200},
    title = {Mossbauer diffractometry: Principles, practice, and an application to a study of chemical order in iron aluminide},
    year = 2004
    }
  • C. H. Chen, W. R. Cook, F. A. Harrison, J. Y. Lin, P. H. Mao, and S. M. Schindler, “Characterization of the heft cdznte pixel detectors,” in Hard x-ray and gamma-ray detector physics v, 2004, p. 9–19.
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    @inproceedings{chen2004characterization,
    added-at = {2019-06-15T05:19:47.000+0200},
    author = {Chen, CM Hubert and Cook, Walter R and Harrison, Fiona A and Lin, Jiao YY and Mao, Peter H and Schindler, Stephen M},
    biburl = {https://www.bibsonomy.org/bibtex/22151c3454fe6869ed15f559bf14e6886/linjiao},
    booktitle = {Hard X-Ray and Gamma-Ray Detector Physics V},
    interhash = {a171cf2142c6ace881ba887c92d4dd49},
    intrahash = {2151c3454fe6869ed15f559bf14e6886},
    keywords = {imported},
    organization = {International Society for Optics and Photonics},
    pages = {9--19},
    timestamp = {2019-06-15T05:20:35.000+0200},
    title = {Characterization of the HEFT CdZnTe pixel detectors},
    volume = 5198,
    year = 2004
    }
  • J. Lin and B. Fultz, “Site-specific long-range order in 57fe3al measured by mössbauer diffractometry,” Philosophical magazine, vol. 83, iss. 22, p. 2621–2640, 2003.
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    @article{lin2003site,
    added-at = {2019-06-15T05:19:47.000+0200},
    author = {Lin, JYY and Fultz, B},
    biburl = {https://www.bibsonomy.org/bibtex/278af96e71a4f0be36556ef7232b838ca/linjiao},
    interhash = {6b8d2bc1ef5fb78ed030d86ec7383a57},
    intrahash = {78af96e71a4f0be36556ef7232b838ca},
    journal = {Philosophical Magazine},
    keywords = {imported},
    number = 22,
    pages = {2621--2640},
    publisher = {Taylor \& Francis},
    timestamp = {2019-06-15T05:20:35.000+0200},
    title = {Site-specific long-range order in 57Fe3Al measured by M{\"o}ssbauer diffractometry},
    volume = 83,
    year = 2003
    }
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    @incollection{fultz2003mossbauer,
    added-at = {2019-06-15T05:19:47.000+0200},
    author = {Fultz, B and Lin, JYY},
    biburl = {https://www.bibsonomy.org/bibtex/264e8ab2fea73212274bedca496a284ea/linjiao},
    booktitle = {Material Research in Atomic Scale by M{\"o}ssbauer Spectroscopy},
    interhash = {3947e874d309db6f618ddacad91e577f},
    intrahash = {64e8ab2fea73212274bedca496a284ea},
    keywords = {imported},
    pages = {285--295},
    publisher = {Springer, Dordrecht},
    timestamp = {2019-06-15T05:20:35.000+0200},
    title = {M{\"o}ssbauer Diffractometry},
    year = 2003
    }
  • C. H. Chen, W. R. Cook, F. A. Harrison, and J. Y. Lin, “Spatial characterization of a large-format, fine-pitch cdznte pixel detector for the heft balloon-borne experiment,” in 2003 ieee nuclear science symposium. conference record (ieee cat. no. 03ch37515), 2003, p. 3346–3350.
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    @inproceedings{chen2003spatial,
    added-at = {2019-06-15T05:19:47.000+0200},
    author = {Chen, CM Hubert and Cook, Walter R and Harrison, Fiona A and Lin, Jiao YY},
    biburl = {https://www.bibsonomy.org/bibtex/220bdcdfb6d86b157816631cb8e545f07/linjiao},
    booktitle = {2003 IEEE Nuclear Science Symposium. Conference Record (IEEE Cat. No. 03CH37515)},
    interhash = {e1f885da7a62109964851dfb124f7094},
    intrahash = {20bdcdfb6d86b157816631cb8e545f07},
    keywords = {imported},
    organization = {IEEE},
    pages = {3346--3350},
    timestamp = {2019-06-15T05:20:35.000+0200},
    title = {Spatial characterization of a large-format, fine-pitch CdZnTe pixel detector for the HEFT balloon-borne experiment},
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    year = 2003
    }
  • B. Fultz, T. Stephens, J. Lin, and U. Kriplani, “Mössbauer diffractometry on polycrystalline 57 fe 3 al,” Physical review b, vol. 65, iss. 6, p. 64419, 2002.
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    @article{fultz2002mossbauer,
    added-at = {2019-06-15T05:19:47.000+0200},
    author = {Fultz, B and Stephens, TA and Lin, JYY and Kriplani, U},
    biburl = {https://www.bibsonomy.org/bibtex/2d33a2ad909939caba44e016ddee52209/linjiao},
    interhash = {8c5434a9340adfbbc28b46b8fcf2bbbc},
    intrahash = {d33a2ad909939caba44e016ddee52209},
    journal = {Physical Review B},
    keywords = {imported},
    number = 6,
    pages = 064419,
    publisher = {American Physical Society},
    timestamp = {2019-06-15T05:20:35.000+0200},
    title = {M{\"o}ssbauer diffractometry on polycrystalline 57 Fe 3 Al},
    volume = 65,
    year = 2002
    }
  • J. Lin, B. Fultz, and U. Kriplani, “Mössbauer diffractometry on chemical sites of 57 fe in fe 3 al,” Hyperfine interactions, vol. 141, iss. 1-4, p. 145–150, 2002.
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    @article{lin2002mossbauer,
    added-at = {2019-06-15T05:19:47.000+0200},
    author = {Lin, JYY and Fultz, B and Kriplani, U},
    biburl = {https://www.bibsonomy.org/bibtex/289d42168fe87aeffad75098013578ff2/linjiao},
    interhash = {91624d7619bb66b46ae864c4b1348108},
    intrahash = {89d42168fe87aeffad75098013578ff2},
    journal = {Hyperfine interactions},
    keywords = {imported},
    number = {1-4},
    pages = {145--150},
    publisher = {Kluwer Academic Publishers},
    timestamp = {2019-06-15T05:20:35.000+0200},
    title = {M{\"o}ssbauer Diffractometry on Chemical Sites of 57 Fe in Fe 3 Al},
    volume = 141,
    year = 2002
    }
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    @article{kriplani2001intensities,
    added-at = {2019-06-15T05:19:47.000+0200},
    author = {Kriplani, U and Lin, JYY and Regehr, MW and Fultz, B},
    biburl = {https://www.bibsonomy.org/bibtex/2eeccd2734847458b799b2a79933e4216/linjiao},
    interhash = {96bdef1031069f7a96ebc14ee13f8092},
    intrahash = {eeccd2734847458b799b2a79933e4216},
    journal = {Physical Review B},
    keywords = {imported},
    number = 2,
    pages = 024405,
    publisher = {American Physical Society},
    timestamp = {2019-06-15T05:20:35.000+0200},
    title = {Intensities of M{\"o}ssbauer diffractions from polycrystalline bcc 57 Fe},
    volume = 65,
    year = 2001
    }
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    @article{lin2001theoretical,
    added-at = {2019-06-15T05:19:47.000+0200},
    author = {Lin, ZS and Lin, J and Wang, ZZ and Wu, YC and Ye, N and Chen, CT and Li, RK},
    biburl = {https://www.bibsonomy.org/bibtex/2724c68253ecf8b9c3d3c4008bc667a2f/linjiao},
    interhash = {510b64d4a25ae30a67588c13b9b6cac9},
    intrahash = {724c68253ecf8b9c3d3c4008bc667a2f},
    journal = {Journal of Physics: Condensed Matter},
    keywords = {imported},
    number = 23,
    pages = {R369},
    publisher = {IOP Publishing},
    timestamp = {2019-06-15T05:20:35.000+0200},
    title = {Theoretical calculations and predictions of the nonlinear optical coefficients of borate crystals},
    volume = 13,
    year = 2001
    }
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    @article{lin2001polarization,
    added-at = {2019-06-15T05:19:47.000+0200},
    author = {Lin, JYY and Kriplani, U and Regehr, M and Fultz, B},
    biburl = {https://www.bibsonomy.org/bibtex/2fa0e81b3b9496702116f579ac2c37545/linjiao},
    interhash = {1fdca05d38c993545554117033713011},
    intrahash = {fa0e81b3b9496702116f579ac2c37545},
    journal = {Hyperfine interactions},
    keywords = {imported},
    number = {3-8},
    pages = {663--672},
    publisher = {Kluwer Academic Publishers},
    timestamp = {2019-06-15T05:20:35.000+0200},
    title = {Polarization Factors for 57 Fe M{\"o}ssbauer Diffractions from Polycrystals},
    volume = 136,
    year = 2001
    }
  • Z. Lin, J. Lin, Z. Wang, C. Chen, and M. Lee, “Mechanism for linear and nonlinear optical effects in lib 3 o 5, csb 3 o 5, and cslib 6 o 10 crystals,” Physical review b, vol. 62, iss. 3, p. 1757, 2000.
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    @article{lin2000mechanism,
    added-at = {2019-06-15T05:19:47.000+0200},
    author = {Lin, Zheshuai and Lin, Jiao and Wang, Zhizhong and Chen, Chuangtian and Lee, Ming-Hsien},
    biburl = {https://www.bibsonomy.org/bibtex/21e9519820ff65ada1a700611a402edbe/linjiao},
    interhash = {746f09bce1d98d5ad7d863aa73fa75e0},
    intrahash = {1e9519820ff65ada1a700611a402edbe},
    journal = {Physical Review B},
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    number = 3,
    pages = 1757,
    publisher = {American Physical Society},
    timestamp = {2019-06-15T05:20:35.000+0200},
    title = {Mechanism for linear and nonlinear optical effects in LiB 3 O 5, CsB 3 O 5, and CsLiB 6 O 10 crystals},
    volume = 62,
    year = 2000
    }
  • C. Chen, Z. Shao, J. Jiang, J. Wei, J. Lin, J. Wang, N. Ye, J. Lv, B. Wu, M. Jiang, and others, “Determination of the nonlinear optical coefficients of yca 4 o (bo 3) 3 crystal,” Josa b, vol. 17, iss. 4, p. 566–571, 2000.
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    @article{chen2000determination,
    added-at = {2019-06-15T05:19:47.000+0200},
    author = {Chen, Chuangtian and Shao, Zongshu and Jiang, Jie and Wei, Jingqian and Lin, Jiao and Wang, Jiyang and Ye, Ning and Lv, Junhua and Wu, Baichang and Jiang, Minhua and others},
    biburl = {https://www.bibsonomy.org/bibtex/230592674cd8c8e8572e46cc7a7c8a137/linjiao},
    interhash = {501dfd042b63747def2f0664c9ad2e05},
    intrahash = {30592674cd8c8e8572e46cc7a7c8a137},
    journal = {JOSA B},
    keywords = {imported},
    number = 4,
    pages = {566--571},
    publisher = {Optical Society of America},
    timestamp = {2019-06-15T05:20:35.000+0200},
    title = {Determination of the nonlinear optical coefficients of YCa 4 O (BO 3) 3 crystal},
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    year = 2000
    }
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    @article{chen1999computer,
    added-at = {2019-06-15T05:19:47.000+0200},
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    biburl = {https://www.bibsonomy.org/bibtex/2290187db8595073ba79c229eedba0697/linjiao},
    interhash = {56895faed0da8f617a5ffcb8683080a6},
    intrahash = {290187db8595073ba79c229eedba0697},
    journal = {Advanced Materials},
    keywords = {imported},
    number = 13,
    pages = {1071--1078},
    publisher = {WILEY-VCH Verlag GmbH Weinheim},
    timestamp = {2019-06-15T05:20:35.000+0200},
    title = {Computer-assisted search for nonlinear optical crystals},
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    year = 1999
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    @article{lin1999mechanism,
    added-at = {2019-06-15T05:19:47.000+0200},
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    biburl = {https://www.bibsonomy.org/bibtex/2956875c101edab81e326b9113337f3c7/linjiao},
    interhash = {d20c7338625e29b7f1a167b61d9c89b2},
    intrahash = {956875c101edab81e326b9113337f3c7},
    journal = {Physical Review B},
    keywords = {imported},
    number = 19,
    pages = 13380,
    publisher = {American Physical Society},
    timestamp = {2019-06-15T05:20:35.000+0200},
    title = {Mechanism for linear and nonlinear optical effects in $\beta$- BaB 2 O 4 crystals},
    volume = 60,
    year = 1999
    }