Many-Body Approach to Electronic Excitations: Concepts and Applications
暫譯: 多體方法於電子激發:概念與應用

Bechstedt, Friedhelm

  • 出版商: Springer
  • 出版日期: 2016-08-23
  • 售價: $9,670
  • 貴賓價: 9.5$9,187
  • 語言: 英文
  • 頁數: 584
  • 裝訂: Quality Paper - also called trade paper
  • ISBN: 3662522683
  • ISBN-13: 9783662522684
  • 相關分類: 物理學 Physics量子計算電子學 Eletronics
  • 海外代購書籍(需單獨結帳)

商品描述

The many-body-theoretical basis and applications of theoretical spectroscopy of condensed matter, e.g. crystals, nanosystems, and molecules are unified in one advanced text for readers from graduate students to active researchers in the field. The theory is developed from first principles including fully the electron-electron interaction and spin interactions. It is based on the many-body perturbation theory, a quantum-field-theoretical description, and Green's functions. The important expressions for ground states as well as electronic single-particle and pair excitations are explained. Based on single-particle and two-particle Green's functions, the Dyson and Bethe-Salpeter equations are derived. They are applied to calculate spectral and response functions. Important spectra are those which can be measured using photoemission/inverse photoemission, optical spectroscopy, and electron energy loss/inelastic X-ray spectroscopy. Important approximations are derived and discussed in the light of selected computational and experimental results. Some numerical implementations available in well-known computer codes are critically discussed. The book is divided into four parts: (i) In the first part the many-electron systems are described in the framework of the quantum-field theory. The electron spin and the spin-orbit interaction are taken into account. Sum rules are derived. (ii) The second part is mainly related to the ground state of electronic systems. The total energy is treated within the density functional theory. The most important approximations for exchange and correlation are delighted. (iii) The third part is essentially devoted to the description of charged electronic excitations such as electrons and holes. Central approximations as Hedin's GW and the T-matrix approximation are discussed.(iv) The fourth part is focused on response functions measured in optical and loss spectroscopies and neutral pair or collective excitations.

商品描述(中文翻譯)

凝聚態理論光譜學的多體理論基礎及其應用,例如晶體、納米系統和分子,統一於一本進階的文本中,適合從研究生到該領域的活躍研究人員閱讀。該理論從第一原理出發,充分考慮了電子-電子相互作用和自旋相互作用。它基於多體微擾理論、量子場論描述和格林函數。對於基態以及電子單粒子和對子激發的重要表達式進行了解釋。基於單粒子和雙粒子格林函數,推導了Dyson方程和Bethe-Salpeter方程,並應用於計算光譜和響應函數。重要的光譜包括可以通過光電子發射/反向光電子發射、光學光譜學和電子能量損失/非彈性X射線光譜學測量的光譜。重要的近似在選定的計算和實驗結果的背景下被推導和討論。一些在知名計算機代碼中可用的數值實現也進行了批判性討論。本書分為四個部分:(i) 在第一部分中,多電子系統在量子場論的框架下進行描述,考慮了電子自旋和自旋-軌道相互作用,推導了總和規則。(ii) 第二部分主要與電子系統的基態相關,總能量在密度泛函理論中進行處理,最重要的交換和相關近似被詳細說明。(iii) 第三部分基本上專注於帶電電子激發的描述,例如電子和空穴,討論了中心近似如Hedin的GW和T矩陣近似。(iv) 第四部分集中於在光學和損失光譜學中測量的響應函數以及中性對子或集體激發。