Quantum field theory in condensed matter physics / Alexei M. Tsvelik.

Tsvelik, Alexei M.
Call Number
530.1/43
Author
Tsvelik, Alexei M., author.
Title
Quantum field theory in condensed matter physics / Alexei M. Tsvelik.
Edition
Second edition.
Physical Description
1 online resource (xvi, 357 pages) : digital, PDF file(s).
Notes
Title from publisher's bibliographic system (viewed on 05 Oct 2015).
Summary
This book is a course in modern quantum field theory as seen through the eyes of a theorist working in condensed matter physics. It contains a gentle introduction to the subject and therefore can be used even by graduate students. The introductory parts include a derivation of the path integral representation, Feynman diagrams and elements of the theory of metals including a discussion of Landau–Fermi liquid theory. In later chapters the discussion gradually turns to more advanced methods used in the theory of strongly correlated systems. The book contains a thorough exposition of such non-perturbative techniques as 1/N-expansion, bosonization (Abelian and non-Abelian), conformal field theory and theory of integrable systems. The book is intended for graduate students, postdoctoral associates and independent researchers working in condensed matter physics.
Subject
QUANTUM FIELD THEORY.
CONDENSED MATTER.
Multimedia
Total Ratings: 0
No records found to display.
 
 
 
02125nam a22003738i 4500
001
 
 
vtls001585170
003
 
 
VRT
005
 
 
20200921122400.0
006
 
 
m|||||o||d||||||||
007
 
 
cr||||||||||||
008
 
 
200921s2003||||enk     o     ||1 0|eng|d
020
$a 9780511615832 (ebook)
020
$z 9780521822848 (hardback)
020
$z 9780521529808 (paperback)
035
$a (UkCbUP)CR9780511615832
039
9
$y 202009211224 $z santha
040
$a UkCbUP $b eng $e rda $c UkCbUP
050
0
0
$a QC174.45 $b .T79 2003
082
0
0
$a 530.1/43 $2 21
100
1
$a Tsvelik, Alexei M., $e author.
245
1
0
$a Quantum field theory in condensed matter physics / $c Alexei M. Tsvelik.
250
$a Second edition.
264
1
$a Cambridge : $b Cambridge University Press, $c 2003.
300
$a 1 online resource (xvi, 357 pages) : $b digital, PDF file(s).
336
$a text $b txt $2 rdacontent
337
$a computer $b c $2 rdamedia
338
$a online resource $b cr $2 rdacarrier
500
$a Title from publisher's bibliographic system (viewed on 05 Oct 2015).
520
$a This book is a course in modern quantum field theory as seen through the eyes of a theorist working in condensed matter physics. It contains a gentle introduction to the subject and therefore can be used even by graduate students. The introductory parts include a derivation of the path integral representation, Feynman diagrams and elements of the theory of metals including a discussion of Landau–Fermi liquid theory. In later chapters the discussion gradually turns to more advanced methods used in the theory of strongly correlated systems. The book contains a thorough exposition of such non-perturbative techniques as 1/N-expansion, bosonization (Abelian and non-Abelian), conformal field theory and theory of integrable systems. The book is intended for graduate students, postdoctoral associates and independent researchers working in condensed matter physics.
650
0
$a QUANTUM FIELD THEORY.
650
0
$a CONDENSED MATTER.
776
0
8
$i Print version: $z 9780521822848
856
4
0
$u https://doi.org/10.1017/CBO9780511615832
999
$a VIRTUA               
No Reviews to Display
Summary
This book is a course in modern quantum field theory as seen through the eyes of a theorist working in condensed matter physics. It contains a gentle introduction to the subject and therefore can be used even by graduate students. The introductory parts include a derivation of the path integral representation, Feynman diagrams and elements of the theory of metals including a discussion of Landau–Fermi liquid theory. In later chapters the discussion gradually turns to more advanced methods used in the theory of strongly correlated systems. The book contains a thorough exposition of such non-perturbative techniques as 1/N-expansion, bosonization (Abelian and non-Abelian), conformal field theory and theory of integrable systems. The book is intended for graduate students, postdoctoral associates and independent researchers working in condensed matter physics.
Notes
Title from publisher's bibliographic system (viewed on 05 Oct 2015).
Subject
QUANTUM FIELD THEORY.
CONDENSED MATTER.
Multimedia