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Quantum field theory approach to condensed matter physics

Quantum field theory approach to condensed matter physics (2회 대출)

자료유형
단행본
개인저자
Marino, Eduardo C.
서명 / 저자사항
Quantum field theory approach to condensed matter physics / Eduardo C. Marino (Universidade Federal do Rio de Janeiro).
발행사항
Cambridge, United Kingdom ;   New York, NY :   Cambridge University Press,   c2017.  
형태사항
xix, 516 p. : ill. ; 26 cm.
ISBN
9781107074118 1107074118
요약
"A balanced combination of introductory and advanced topics provides a new and unique perspective on the quantum field theory approach to condensed matter physics. Beginning with the basics of these subjects, such as static and vibrating lattices, independent and interacting electrons, the functional formulation for fields, different generating functionals and their roles, this book presents a unified viewpoint illustrating the connections and relationships among various physical concepts and mechanisms. Advanced and newer topics bring the book up-to-date with current developments and include sections on cuprate and pnictide superconductors, graphene, Weyl semimetals, transition metal dichalcogenides and topological insulators. Finally, well-known subjects such as the quantum Hall effect, superconductivity, Mott and Anderson insulators, and the Anderson-Higgs mechanism are examined within a unifying QFT-CMP approach. Presenting new insights on traditional topics, this text allows graduate students and researchers to master the proper theoretical tools required in a variety of Condensed Matter Physics systems"--
내용주기
Independent electrons and static crystals -- Vibrating crystals -- Interacting electrons -- Interactions in action -- Functional formulation of quantum field theory -- Quantum fields in action -- Symmetries: explicit or secret -- Classical topological excitations -- Quantum topological excitations -- Duality, bosonization and generalized statistics -- Statistical transmutation -- Pseudo quantum electrodynamics -- Quantum field theory methods in condensed matter -- Metals, Fermi liquids, Mott and Anderson insulators -- The dynamics of polarons -- Polyacetylene -- The Kondo effect -- Quantum magnets in 1D: Fermionization, bosonization, Coulomb gases and 'all that' -- Quantum magnets in 2D: nonlinear sigma model, CP1 and 'all that' -- The spin-fermion system: a quantum field theory approach -- The spin glass -- Quantum field theory approach to superfluidity -- Quantum field theory approach to superconductivity -- The cuprate high-temperature superconductors -- The pnictides: iron based superconductors -- The quantum Hall effect -- Graphene -- Silicene and transition metal dichalcogenides -- Topological insulators -- Non-abelian statistics and quantum computation.
서지주기
Includes bibliographical references and index.
일반주제명
Condensed matter. Quantum field theory.
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020 ▼a 1107074118 ▼q (alk. paper)
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082 0 0 ▼a 530.4/1 ▼2 23
084 ▼a 530.41 ▼2 DDCK
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100 1 ▼a Marino, Eduardo C.
245 1 0 ▼a Quantum field theory approach to condensed matter physics / ▼c Eduardo C. Marino (Universidade Federal do Rio de Janeiro).
260 ▼a Cambridge, United Kingdom ; ▼a New York, NY : ▼b Cambridge University Press, ▼c c2017.
300 ▼a xix, 516 p. : ▼b ill. ; ▼c 26 cm.
504 ▼a Includes bibliographical references and index.
505 0 ▼a Independent electrons and static crystals -- Vibrating crystals -- Interacting electrons -- Interactions in action -- Functional formulation of quantum field theory -- Quantum fields in action -- Symmetries: explicit or secret -- Classical topological excitations -- Quantum topological excitations -- Duality, bosonization and generalized statistics -- Statistical transmutation -- Pseudo quantum electrodynamics -- Quantum field theory methods in condensed matter -- Metals, Fermi liquids, Mott and Anderson insulators -- The dynamics of polarons -- Polyacetylene -- The Kondo effect -- Quantum magnets in 1D: Fermionization, bosonization, Coulomb gases and 'all that' -- Quantum magnets in 2D: nonlinear sigma model, CP1 and 'all that' -- The spin-fermion system: a quantum field theory approach -- The spin glass -- Quantum field theory approach to superfluidity -- Quantum field theory approach to superconductivity -- The cuprate high-temperature superconductors -- The pnictides: iron based superconductors -- The quantum Hall effect -- Graphene -- Silicene and transition metal dichalcogenides -- Topological insulators -- Non-abelian statistics and quantum computation.
520 ▼a "A balanced combination of introductory and advanced topics provides a new and unique perspective on the quantum field theory approach to condensed matter physics. Beginning with the basics of these subjects, such as static and vibrating lattices, independent and interacting electrons, the functional formulation for fields, different generating functionals and their roles, this book presents a unified viewpoint illustrating the connections and relationships among various physical concepts and mechanisms. Advanced and newer topics bring the book up-to-date with current developments and include sections on cuprate and pnictide superconductors, graphene, Weyl semimetals, transition metal dichalcogenides and topological insulators. Finally, well-known subjects such as the quantum Hall effect, superconductivity, Mott and Anderson insulators, and the Anderson-Higgs mechanism are examined within a unifying QFT-CMP approach. Presenting new insights on traditional topics, this text allows graduate students and researchers to master the proper theoretical tools required in a variety of Condensed Matter Physics systems"-- ▼c Provided by publisher.
650 0 ▼a Condensed matter.
650 0 ▼a Quantum field theory.
945 ▼a KLPA

소장정보

No. 소장처 청구기호 등록번호 도서상태 반납예정일 예약 서비스
No. 1 소장처 과학도서관/Sci-Info(2층서고)/ 청구기호 530.41 M339q 등록번호 121245406 (2회 대출) 도서상태 대출가능 반납예정일 예약 서비스 B M

컨텐츠정보

책소개

A balanced combination of introductory and advanced topics provides a new and unique perspective on the quantum field theory approach to condensed matter physics.

A balanced combination of introductory and advanced topics provides a new and unique perspective on the quantum field theory approach to condensed matter physics. Beginning with the basics of these subjects, such as static and vibrating lattices, independent and interacting electrons, the functional formulation for fields and different generating functionals and their roles, this book presents a unified viewpoint illustrating the connections and relationships among various physical concepts and mechanisms. Advanced and newer topics bring the book up to date with current developments and include sections on cuprate and pnictide superconductors, graphene, Weyl semimetals, transition metal dichalcogenides and topological insulators. Finally, well-known subjects such as the quantum Hall effect, superconductivity, Mott and Anderson insulators, and the Anderson-Higgs mechanism are examined within a unifying QFT-CMP approach. Presenting new insights on traditional topics, this text allows graduate students and researchers to master the proper theoretical tools required in a variety of condensed matter physics systems.


정보제공 : Aladin

목차

Independent electrons and static crystals
Vibrating crystals
Interacting electrons
Interactions in action
Functional formulation of quantum field theory
Quantum fields in action
Symmetries: explicit or secret
Classical topological excitations
Quantum topological excitations
Duality, bosonization and generalized statistics
Statistical transmutation
Pseudo quantum electrodynamics
Quantum field theory methods in condensed matter
Metals, Fermi liquids, Mott and Anderson insulators
The dynamics of polarons
Polyacetylene
The Kondo effect
Quantum magnets in 1D: Fermionization, bosonization, Coulomb gases and ''all that''
Quantum magnets in 2D: nonlinear sigma model, CP1 and ''all that''
The spin-fermion system: a quantum field theory approach
The spin glass
Quantum field theory approach to superfluidity
Quantum field theory approach to superconductivity
The cuprate high-temperature superconductors
The pnictides: iron based superconductors
The quantum Hall effect
Graphene
Silicene and transition metal dichalcogenides
Topological insulators
Non-abelian statistics and quantum computation.

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Gribbin, John (2025)
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