Title of article :
Liquid–gas and other unusual thermal phase transitions in some large-N magnets Original Research Article
Author/Authors :
O. Tchernyshyov، نويسنده , , S.L. Sondhi، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2002
Pages :
21
From page :
429
To page :
449
Abstract :
Much insight into the low temperature properties of quantum magnets has been gained by generalizing them to symmetry groups of order N, and then studying the large-N limit. In this paper we consider an unusual aspect of their finite temperature behavior—their exhibiting a phase transition between a perfectly paramagnetic state and a paramagnetic state with a finite correlation length at N=∞. We analyze this phenomenon in some detail in the large “spin” (classical) limit of the SU(N) ferromagnet which is also a lattice discretization of the CPN−1 model. We show that at N=∞ the order of the transition is governed by lattice connectivity. At finite values of N, the transition goes away in one or less dimension but survives on many lattices in two dimensions and higher, for sufficiently large N. The latter conclusion contradicts a recent conjecture of Sokal and Starinets [Nucl. Phys. B 601 (2001) 425], yet is consistent with the known finite temperature behavior of the SU(2) case. We also report closely related first order paramagnet–ferromagnet transitions at large N and shed light on a violation of Elitzurʹs theorem at infinite N via the large-q limit of the q state Potts model, reformulated as an Ising gauge theory.
Keywords :
Nonlinear ? model , CPN?1 model , Phase transitions , 1/N expansion , Quantum magnetism
Journal title :
Nuclear Physics B
Serial Year :
2002
Journal title :
Nuclear Physics B
Record number :
879066
Link To Document :
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