Elements of Green Function and Density Functional Theory
暫譯: 綠函數與密度泛函理論的元素
Ferdi Aryasetiawan
- 出版商: World Scientific Pub
- 出版日期: 2025-03-28
- 售價: $6,550
- 貴賓價: 9.5 折 $6,223
- 語言: 英文
- 頁數: 664
- 裝訂: Hardcover - also called cloth, retail trade, or trade
- ISBN: 9819805791
- ISBN-13: 9789819805792
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商品描述
If there were no Coulomb interaction among electrons, it would be relatively straightforward to solve the many-electron Schrödinger equation. It is, however, precisely this interaction that is at the heart of numerous fascinating phenomena in condensed matter physics such as superconductivity, Kondo physics, magnetism, etc. Due to the large number of electrons in a material being of the order of Avogadro's number, it is at present -- and perhaps in the foreseeable future -- not feasible or even desirable to solve the Schrödinger equation to obtain the many-electron wavefunction. Fortunately, a large number of important physical properties can be calculated without explicit knowledge of the wavefunction.Two of the most important formalisms for dealing with the many-electron problem which avoid a direct use of the many-electron wavefunction are the Green function and the density functional theory. Within the Kohn-Sham scheme the latter is used to calculate ground-state properties whereas the former for excitation spectra. The book presents the fundamentals of these two theories in detail with essential many-body tools, such as the occupation number representation and Grassmann algebra developed from scratch. Prior knowledge of many-body theory is not a prerequisite so that it is readable for final-year undergraduates and graduate students in physics and chemistry as well as researchers in the field of electronic structure and many-body theory. The book includes in the last chapter an exposition of a density-functional path for determining the Green function, a new formalism recently proposed by the author. The book should be a valuable companion for those embarking in the field of many-electron physics.
商品描述(中文翻譯)
如果電子之間沒有庫侖相互作用,解決多電子薛丁格方程將相對簡單。然而,正是這種相互作用構成了凝聚態物理中許多迷人現象的核心,例如超導性、近藤效應、磁性等。由於材料中電子的數量大約是阿伏伽德羅數的量級,目前——甚至在可預見的未來——解決薛丁格方程以獲得多電子波函數是不可行的,甚至可能不是理想的。幸運的是,許多重要的物理性質可以在不明確知道波函數的情況下進行計算。處理多電子問題的兩個最重要的形式主義是格林函數和密度泛函理論,這兩者都避免了直接使用多電子波函數。在科恩-香姆(Kohn-Sham)方案中,後者用於計算基態性質,而前者則用於激發光譜。本書詳細介紹了這兩種理論的基本原理,並提供了必要的多體工具,例如從零開始發展的佔據數表示法和格拉斯曼代數。對多體理論的先前知識不是先決條件,因此本書適合物理和化學的最後一年本科生、研究生以及電子結構和多體理論領域的研究人員閱讀。本書的最後一章介紹了一種確定格林函數的密度泛函路徑,這是作者最近提出的一種新形式主義。本書應該成為那些進入多電子物理領域的人的寶貴伴侶。