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苏州大学功能纳米与软物质研究院导师介绍:Keith Gilmore

作者:聚创苏大考研网-小厦老师 点击量:211 2013-07-25

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   Keith Gilmore 副教授 硕士生导师
  ?  B.A. in Physics, Swarthmore College (USA), 2001
  ?  Ph.D. in Physics, Montana State University (USA), 2007
  ?  Guest Researcher, National Institute of Standards and Technology (Gaithersburg, Maryland, USA), 2005-2008
  ?  National Research Council Postdoctoral Fellow, National Institute of Standards and Technology (Gaithersburg, Maryland, USA), 2008-2010
  ?  Postdoctoral Fellow, Molecular Foundry, Lawrence Berkeley National Lab (USA), 2010-2012
  ?  Visiting Faculty, University of Washington (USA), 2012
  ?  Associate Professor, FUNSOM, Soochow University, since 2012

  电话:0512-65882641
  E-mail:gilmore@suda.edu.cn

  Research Interests:
  ·         Computational optical and x-ray spectroscopy
  ·         Excited-state dynamics for energy applications

  X-ray spectroscopy is a valuable research tool due to the elemental specificity of the probe and the comprehensive range of information afforded by various techniques.  We seek to improve the accuracy of first-principles x-ray spectra calculations.  We pursue several approaches including the excited core hole method and solving the Bethe-Salpeter equation, in addition to utilizing non ab initio multiplet calculations.

Selected Publications
  1.        First-principles calculation of the nonadiabatic spin transfer torque in Ni and Fe, K. Gilmore, I. Garate, A. H. MacDonald, and M. D. Stiles; Physical Review B 84, 224412 (2011).
  2.        Nonadiabatic spin-transfer torque in real materials, I. Garate, M. D. Stiles, and A. H. MacDonald; Physical Review B 79, 104416 (2009).
  3.        Spin-orbit damping in transition metal systems (invited), K. Gilmore , Y. U. Idzerda, and M. D. Stiles; Journal of Applied Physics 103, 07D303 (2008).
  4.        Identification of the dominant precession damping mechanism in Fe, Co, and Ni by first-principles calculations, K. Gilmore , Y. U. Idzerda, and M. D. Stiles; Physical Review Letters 99, 027204 (2007).
  5.        Synthetic control of magnetic moment and exchange bias in all-oxide materials encapsulated within a spherical protein cage, M. T. Klem, D. A. Resnick, M. Young, Y. U. Idzerda, and T. Douglas; Journal of the American Chemical Society 129, 197-201 (2007).

  

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