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Quantum theory of materials

Quantum theory of materials (1회 대출)

자료유형
단행본
개인저자
Kaxiras, Efthimios, author. Joannopoulos, J. D. (John D.), 1947-, author.
서명 / 저자사항
Quantum theory of materials / Efthimios Kaxiras, John D. Joannopoulos.
발행사항
Cambridge, United Kingdom :   Cambridge University Press,   2019.  
형태사항
xxiii, 653 p. : col. ill., charts ; 26 cm.
ISBN
9780521117111 0521117119
요약
"This accessible new text introduces the theoretical concepts and tools essential for graduate-level courses on the physics of materials in condensed matter physics, physical chemistry, materials science and engineering, and chemical engineering. Topics covered range from fundamentals such as crystal periodicity and symmetry, and derivation of single-particle equations, to modern additions including graphene, two-dimensional solids, carbon nanotubes, topological states, and Hall physics. Advanced topics such as phonon interactions with phonons, photons and electrons, and magnetism, are presented in an accessible way, and a set of appendices reviewing crucial fundamental physics and mathematical tools makes this text suitable for students from a range of backgrounds. Students will benefit from the emphasis on translating theory into practice, with worked examples explaining experimental observations, applications illustrating how theoretical concepts can be applied to real research problems, and 242 informative full color illustrations. End-of chapter exercises are included for homework and self-study, with solutions and lecture slides for instructors available online"--Provided by publisher.
일반주기
Includes index.  
내용주기
From atoms to solids -- Electrons in crystals: translational periodicity -- Symmetries beyond translational periodicity -- From many particles to the single-particle picture -- Electronic properties of crystals -- Electronic excitations -- Lattice vibrations and deformations -- Phonon interactions -- Dynamics and topological constraints -- Magnetic behavior of solids.
일반주제명
Condensed matter. Quantum theory.
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245 1 0 ▼a Quantum theory of materials / ▼c Efthimios Kaxiras, John D. Joannopoulos.
260 ▼a Cambridge, United Kingdom : ▼b Cambridge University Press, ▼c 2019.
264 1 ▼a Cambridge, United Kingdom : ▼b Cambridge University Press, ▼c 2019.
264 4 ▼c ©2019
300 ▼a xxiii, 653 p. : ▼b col. ill., charts ; ▼c 26 cm.
336 ▼a text ▼b txt ▼2 rdacontent
337 ▼a unmediated ▼b n ▼2 rdamedia
338 ▼a volume ▼b nc ▼2 rdacarrier
500 ▼a Includes index.
505 0 ▼a From atoms to solids -- Electrons in crystals: translational periodicity -- Symmetries beyond translational periodicity -- From many particles to the single-particle picture -- Electronic properties of crystals -- Electronic excitations -- Lattice vibrations and deformations -- Phonon interactions -- Dynamics and topological constraints -- Magnetic behavior of solids.
520 ▼a "This accessible new text introduces the theoretical concepts and tools essential for graduate-level courses on the physics of materials in condensed matter physics, physical chemistry, materials science and engineering, and chemical engineering. Topics covered range from fundamentals such as crystal periodicity and symmetry, and derivation of single-particle equations, to modern additions including graphene, two-dimensional solids, carbon nanotubes, topological states, and Hall physics. Advanced topics such as phonon interactions with phonons, photons and electrons, and magnetism, are presented in an accessible way, and a set of appendices reviewing crucial fundamental physics and mathematical tools makes this text suitable for students from a range of backgrounds. Students will benefit from the emphasis on translating theory into practice, with worked examples explaining experimental observations, applications illustrating how theoretical concepts can be applied to real research problems, and 242 informative full color illustrations. End-of chapter exercises are included for homework and self-study, with solutions and lecture slides for instructors available online"--Provided by publisher.
650 0 ▼a Condensed matter.
650 0 ▼a Quantum theory.
700 1 ▼a Joannopoulos, J. D. ▼q (John D.), ▼d 1947-, ▼e author.
945 ▼a ITMT

소장정보

No. 소장처 청구기호 등록번호 도서상태 반납예정일 예약 서비스
No. 1 소장처 과학도서관/Sci-Info(2층서고)/ 청구기호 530.41 K22q 등록번호 121268457 (1회 대출) 도서상태 대출가능 반납예정일 예약 서비스 B M

컨텐츠정보

책소개

This accessible new text introduces the theoretical concepts and tools essential for graduate-level courses on the physics of materials in condensed matter physics, physical chemistry, materials science and engineering, and chemical engineering. Topics covered range from fundamentals such as crystal periodicity and symmetry, and derivation of single-particle equations, to modern additions including graphene, two-dimensional solids, carbon nanotubes, topological states, and Hall physics. Advanced topics such as phonon interactions with phonons, photons and electrons, and magnetism, are presented in an accessible way, and a set of appendices reviewing crucial fundamental physics and mathematical tools makes this text suitable for students from a range of backgrounds. Students will benefit from the emphasis on translating theory into practice, with worked examples explaining experimental observations, applications illustrating how theoretical concepts can be applied to real research problems, and 242 informative full color illustrations. End-of chapter exercises are included for homework and self-study, with solutions and lecture slides for instructors available online.

An accessible overview of the concepts and tools essential to the physics of materials, with applications, exercises, and color figures.


정보제공 : Aladin

목차

1. From atoms to solids; 2. Electrons in crystals: translational periodicity; 3. Symmetries beyond translational periodicity; 4. From many-particles to the single-particle picture; 5. Electronic properties of crystals; 6. Electronic excitations; 7. Lattice vibrations and deformations; 8. Phonon interactions; 9. Dynamics and topological constraints; 10. Magnetic behavior of solids; Appendix A: mathematical tools; Appendix B: classical electrodynamics; Appendix C: quantum mechanics; Appendix D: thermodynamics and statistical mechanics.

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Gribbin, John (2025)
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