Chiral effective theory of strong interactions

被引:13
|
作者
Ioffe, BL [1 ]
机构
[1] Inst Theoret & Expt Phys, Moscow 117218, Russia
关键词
D O I
10.1070/PU2001v044n12ABEH000972
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
A review of chiral effective theory (CET) is presented. CET is based on quantum chromodynamics (QCD) and describes strong interaction processes at low energies. It is proved that CET arises as a consequence of the spontaneous violation of chiral symmetry in QCD - the appearance of chiral-symmetry-violating vacuum condensates. The Goldstone theorem is proved for the case of QCD, and the existence of the octet of massless Goldstone bosons (pi, K, eta) is demonstrated in the limit of massless u, d and s quarks (or the existence of the triplet of massless Pions in the limit M-u, m(d) --> 0). It is shown that the same phenomenon - the appearance of quark condensate in QCD - which is responsible for the Goldstone bosons also gives rise to chiral-symmetry-violating massive baryons. The general form of the CET Lagrangian is derived. Examples of higher order corrections to tree diagrams in CET are considered. The Wess-Zumino term (i.e., the p(4) term in the CET Lagrangian) is given. Low energy sum rules are presented. QCD and CET at finite temperature are discussed. In the CET framework, the T-2 correction to quark condensate in QCD is calculated at finite temperature, and results including higher order temperature corrections are presented. These results indicate on a phase transition to occur at T approximate to 150-200 MeV in QCD. The mixing of current correlators in order of T-2 is proved.
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收藏
页码:1211 / 1227
页数:17
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