000 03018nam a2200385Ki 4500
001 ocn836871873
003 OCoLC
005 20240726105335.0
008 130408s2013 enka ob 001 0 eng d
040 _aNT
_beng
_erda
_cNT
020 _a9781107313880
_q((electronic)l(electronic)ctronic)l((electronic)l(electronic)ctronic)ctronic bk.
050 0 4 _aQC611
_b.F545 2013
049 _aNTA
100 1 _aFradkin, Eduardo.
_e1
245 1 0 _aField theories of condensed matter physicsEduardo Fradkin, University of Illinois at Urbana-Champaign.
250 _asecond edition.
260 _aCambridge :
_bCambridge University Press,
_c(c)2013.
300 _a1 online resource (xvi, 838 pages) :
_billustrations.
336 _atext
_btxt
_2rdacontent
337 _acomputer
_bc
_2rdamedia
338 _aonline resource
_bcr
_2rdacarrier
347 _adata file
_2rda
520 0 _a"Presenting the physics of the most challenging problems in condensed matter using the conceptual framework of quantum field theory, this book is of great interest to physicists in condensed matter and high energy and string theorists, as well as mathematicians. Revised and updated, this second edition features new chapters on the renormalization group, the Luttinger liquid, gauge theory, topological fluids, topological insulators and quantum entanglement. The book begins with the basic concepts and tools, developing them gradually to bring readers to the issues currently faced at the frontiers of research, such as topological phases of matter, quantum and classical critical phenomena, quantum Hall effects and superconductors. Other topics covered include one-dimensional strongly correlated systems, quantum ordered and disordered phases, topological structures in condensed matter and in field theory and fractional statistics"--
_cProvided by publisher.
504 _a2
505 0 0 _aMachine generated contents note: 1. Introduction; 2. The Hubbard model; 3. The magnetic instability of the Fermi system; 4. The renormalization group and scaling; 5. One-dimensional quantum antiferromagnets; 6. The Luttinger liquid; 7. Sigma models and topological terms; 8. Spin liquid states; 9. Gauge theory, dimer models, and topological phases; 10. Chiral spin states and anyons; 11. Anyon superconductivity; 12. Topology and quantum Hall effect; 13. The fractional quantum Hall effect; 14. Topological fluids; 15. Physics at the edge; 16. Topological insulators; 17. Quantum entanglement; References; Index.
530 _a2
_ub
650 0 _aHigh temperature superconductivity.
650 0 _aHubbard model.
650 0 _aAntiferromagnetism.
655 1 _aElectronic Books.
856 4 0 _uhttps://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&db=nlabk&AN=527858&site=eds-live&custid=s3260518
_zClick to access digital title | log in using your CIU ID number and my.ciu.edu password
942 _cOB
_D
_eEB
_hQC..
_m2013
_QOL
_R
_x
_8NFIC
_2LOC
994 _a02
_bNT
999 _c97105
_d97105
902 _a1
_bCynthia Snell
_c1
_dCynthia Snell