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Titlebook: Local Density Theory of Polarizability; Gerald D. Mahan,K. R. Subbaswamy Book 1990 Springer Science+Business Media New York 1990 atoms.den

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发表于 2025-3-21 20:07:46 | 显示全部楼层 |阅读模式
书目名称Local Density Theory of Polarizability
编辑Gerald D. Mahan,K. R. Subbaswamy
视频videohttp://file.papertrans.cn/588/587613/587613.mp4
丛书名称Physics of Solids and Liquids
图书封面Titlebook: Local Density Theory of Polarizability;  Gerald D. Mahan,K. R. Subbaswamy Book 1990 Springer Science+Business Media New York 1990 atoms.den
描述During the past decade the theoretical physics community has learned how to evaluate accurately polarizabilities and susceptibilities for many-electron systems such as atoms, solids, and liquids. The most accurate numerical technique employs a method often called the Time-Dependent Local Density Approximation, which is abbreviated TDLDA. The present volume is a review of recent research on the theory of po­ larizabilities and susceptibilities. Both authors have been doing these cal­ culations. However, this review surveys the entire field, summarizing the research of many contributors. The application of an external field, either ac or de, will induce a dipole moment which can be calculated and compared with experiment. For mod­ erately strong fields, both linear and nonlinear processes contribute to the moment. We cover topics such as polarizability, hyperpolarizability, pho­ toionization, phonons, and piezoelectricity. Density functional theory in the Local Density Approximation (LDA) has been shown to be a very accurate method for calculating ground state prop­ erties of electronic system. For static external fields, the induced moments are properties of the ground state. Then t
出版日期Book 1990
关键词atoms; density; density functional theory; electricity; experiment; fields; molecule; physics; system; theore
版次1
doihttps://doi.org/10.1007/978-1-4899-2486-5
isbn_softcover978-1-4899-2488-9
isbn_ebook978-1-4899-2486-5
copyrightSpringer Science+Business Media New York 1990
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Book 1990on, phonons, and piezoelectricity. Density functional theory in the Local Density Approximation (LDA) has been shown to be a very accurate method for calculating ground state prop­ erties of electronic system. For static external fields, the induced moments are properties of the ground state. Then t
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Gerald D. Mahan,K. R. Subbaswamys that are interesting for place recognition applications: (1) It relies on sparse distributed representations, which are known to have high representational capacity and high robustness towards noise. (2) It heavily exploits the sequential structure of incoming sensory data. In this paper, we discu
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Gerald D. Mahan,K. R. Subbaswamyon of the remaining, partially solved CSP..We demonstrate our approach on a Lotka-Volterra system with PPMRS semantics, where exact compound action computation is infeasible. Our approach allows to perform simulation studies and Bayesian filtering with PPMRS semantics in scenarios where this was pre
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Gerald D. Mahan,K. R. Subbaswamyizes only the most relevant neurons of each convolutional layer and thus generates more selective saliency maps. We test our approach with a dueling Deep Q-Network (DQN) agent which we trained on three different Atari games of varying complexity. Since the dueling DQN approach considerably alters th
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