000 03020cam a22003131i 4500
001 16555813
003 EG-ScBUE
005 20250527091448.0
008 101129s2011 enka f b 001 0 eng d
020 _a9780521514682 (hardback)
040 _aEG-ScBUE
_beng
_erda
_cEG-ScBUE
_dEG-ScBUE
082 0 4 _a530.474
_222
_bSAC
100 1 _aSachdev, Subir,
_d1961-
_928961
_eauthor.
245 1 0 _aQuantum phase transitions /
_cSubir Sachdev, Harvard University.
250 _aSecond edition.
264 1 _aCambridge :
_bCambridge University Press,
_c2011.
300 _axviii, 501 pages :
_billustrations ;
_c26 cm
336 _2rdacontent
_atext
_btxt
337 _aunmediated
_2rdamedia
_bn
338 _avolume
_bnc
_2rdacarrier
504 _aIncludes bibliographical references and index.
505 8 _aMachine generated contents note: Part I. Introduction: 1. Basic concepts; 2. Overview; Part II. A First Course: 3. Classical phase transitions; 4. The renormalization group; 5. The quantum Ising model; 6. The quantum rotor model; 7. Correlations, susceptibilities, and the quantum critical point; 8. Broken symmetries; 9. Boson Hubbard model; Part III. Non-zero Temperatures: 10. The Ising chain in a transverse field; 11. Quantum rotor models: large-N limit; 12. The d = 1, O(N �> 3) rotor models; 13. The d = 2, O(N �> 3) rotor models; 14. Physics close to and above the upper-critical dimension; 15. Transport in d = 2; Part IV. Other Models: 16. Dilute Fermi and Bose gases; 17. Phase transitions of Dirac fermions; 18. Fermi liquids, and their phase transitions; 19. Heisenberg spins: ferromagnets and antiferromagnets; 20. Spin chains: bosonization; 21. Magnetic ordering transitions of disordered systems; 22. Quantum spin glasses; References; Index.
520 _a"Describing the physical properties of quantum materials near critical points with long-range many-body quantum entanglement, this book introduces readers to the basic theory of quantum phases, their phase transitions and their observable properties. This second edition begins with a new section suitable for an introductory course on quantum phase transitions, assuming no prior knowledge of quantum field theory. It also contains several new chapters to cover important recent advances, such as the Fermi gas near unitarity, Dirac fermions, Fermi liquids and their phase transitions, quantum magnetism, and solvable models obtained from string theory. After introducing the basic theory, it moves on to a detailed description of the canonical quantum-critical phase diagram at non-zero temperatures. Finally, a variety of more complex models are explored. This book is ideal for graduate students and researchers in condensed matter physics and particle and string theory"--
650 7 _aPhase transformations (Statistical physics)
_928962
_2BUEsh
650 7 _aQuantum theory.
_928963
_2BUEsh
655 _vReading book
856 4 2 _3Cover image
_uhttp://assets.cambridge.org/97805215/14682/cover/9780521514682.jpg
942 _2ddc
_cBB
999 _c16478
_d16478