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Titlebook: Quantum Many-Body Physics; A Perspective on Str Yoshio Kuramoto Book 2020 Springer Japan KK, part of Springer Nature 2020 3d and 4f Electro

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书目名称Quantum Many-Body Physics
副标题A Perspective on Str
编辑Yoshio Kuramoto
视频video
概述An essential primer on many-body particle physics -- from perturbation theory to DMFT.Explains advanced theoretical concepts in a self-contained manner.Presents renormalization and bosonization with e
丛书名称Lecture Notes in Physics
图书封面Titlebook: Quantum Many-Body Physics; A Perspective on Str Yoshio Kuramoto Book 2020 Springer Japan KK, part of Springer Nature 2020 3d and 4f Electro
描述.This book offers a compact tutorial on basic concepts and tools in quantum many-body physics, and focuses on the correlation effects produced by mutual interactions..The content is divided into three parts, the first of which introduces readers to perturbation theory. It begins with the simplest examples—hydrogen and oxygen molecules—based on their effective Hamiltonians, and looks into basic properties of electrons in solids from the perspective of localized and itinerant limits. Readers will also learn about basic theoretical methods such as the linear response theory and Green functions. The second part focuses on mean-field theory for itinerant electrons, e.g. the Fermi liquid theory and superconductivity. Coulomb repulsion among electrons is addressed in the context of high-.T.c .superconductivity in cuprates and iron pnictides. A recent discovery concerning hydride superconductors is also briefly reviewed. In turn, the third part highlights quantum fluctuation effects beyond the mean-field picture. Discussing the dramatic renormalization effect in the Kondo physics, it provides a clear understanding of nonperturbative interaction effects. Further it introduces readers to fra
出版日期Book 2020
关键词3d and 4f Electron Systems; Bosonization; Dynamical Mean-field Theory; Effective Hamiltonian; Fractional
版次1
doihttps://doi.org/10.1007/978-4-431-55393-9
isbn_softcover978-4-431-55392-2
isbn_ebook978-4-431-55393-9Series ISSN 0075-8450 Series E-ISSN 1616-6361
issn_series 0075-8450
copyrightSpringer Japan KK, part of Springer Nature 2020
The information of publication is updating

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Fermi Liquid Theory,he theory is the concept of quasi-particles. This chapter explains how the Fermi liquid theory accounts for interaction effects taking examples such as specific heat and magnetic susceptibility. Also discussed is the dynamical response of Fermi liquid against slowly varying external fields.
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Kondo Effect, speaking, the exchange interaction between the impurity and conduction electrons becomes endlessly large in the effective Hamiltonian, even though its magnitude is originally tiny. As a result, the impurity spin is completely screened in the ground state, resulting in a local Fermi liquid. However,
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One-Dimensional Fermions and Bosonization,er than in higher dimensional systems. Detailed treatment is provided for a powerful method called bosonization, which regards density fluctuation of 1D fermions as a bosonic object. In terms of bosonization, it is possible to discuss such interesting states as non-Fermi liquid with power-law decay
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Many-Body Perturbation Theory,umbers. Green function appears as a natural element in Feynman diagram that represents a group of terms in many-body perturbation theory. The graphical method appeals to intuition, and is convenient to reorganize the perturbation series to infinite order. The discussion in this chapter is rather tec
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Dynamical Mean Field Theory,corresponding field can be included. The correlation problem in a large system is then replaced by a single-site problem surrounded by a dynamical effective medium. The effective impurity system is regarded as zero-dimensional. It can be shown that the replacement by an effective impurity is exact i
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