DYNAMIC SYMMETRY-BREAKING AND UNIVERSALITY BREAKDOWN

被引:167
作者
PECCEI, RD
ZHANG, X
机构
[1] Physics Department, University of California, Los Angeles, Los Angeles
关键词
D O I
10.1016/0550-3213(90)90273-G
中图分类号
O412 [相对论、场论]; O572.2 [粒子物理学];
学科分类号
摘要
We argue that, if the symmetry breakdown in the electroweak theory is dynamical, one should expect, in general, to have some nonuniversal interactions. Given the present bounds on flavor mixing, this imposes rather strong restrictions on the dynamics and the pattern of spontaneous symmetry breaking. The relevance of these considerations for top quark interactions is speculated upon. © 1990.
引用
收藏
页码:269 / 283
页数:15
相关论文
共 27 条
[11]   PROBING THE WEAK BOSON SECTOR IN E+E--]W+W- [J].
HAGIWARA, K ;
PECCEI, RD ;
ZEPPENFELD, D ;
HIKASA, K .
NUCLEAR PHYSICS B, 1987, 282 (02) :253-307
[12]   MIXING BETWEEN ORDINARY AND EXOTIC FERMIONS [J].
LANGACKER, P ;
LONDON, D .
PHYSICAL REVIEW D, 1988, 38 (03) :886-906
[13]   SCALING LAWS AND TRIVIALITY BOUNDS IN THE LATTICE PHI-4 THEORY .2. ONE-COMPONENT MODEL IN THE PHASE WITH SPONTANEOUS SYMMETRY-BREAKING [J].
LUSCHER, M ;
WEISZ, P .
NUCLEAR PHYSICS B, 1988, 295 (01) :65-92
[14]   SCALING LAWS AND TRIVIALITY BOUNDS IN THE LATTICE-PHI-4 THEORY .1. ONE-COMPONENT MODEL IN THE SYMMETRICAL PHASE [J].
LUSCHER, M ;
WEISZ, P .
NUCLEAR PHYSICS B, 1987, 290 (01) :25-60
[15]   CHIRAL QUARKS AND THE NON-RELATIVISTIC QUARK-MODEL [J].
MANOHAR, A ;
GEORGI, H .
NUCLEAR PHYSICS B, 1984, 234 (01) :189-212
[16]   HEAVY TOP-QUARK MASS PREDICTIONS [J].
MARCIANO, WJ .
PHYSICAL REVIEW LETTERS, 1989, 62 (24) :2793-2796
[17]   ANOMALOUS EFFECTS IN E+E- ANNIHILATION INTO BOSON PAIRS .1. E+E--]W+W- [J].
MERY, P ;
PERROTTET, M ;
RENARD, FM .
ZEITSCHRIFT FUR PHYSIK C-PARTICLES AND FIELDS, 1987, 36 (02) :249-266
[18]   DYNAMICAL ELECTROWEAK SYMMETRY-BREAKING WITH LARGE ANOMALOUS DIMENSION AND T-QUARK CONDENSATE [J].
MIRANSKY, VA ;
TANABASHI, M ;
YAMAWAKI, K .
PHYSICS LETTERS B, 1989, 221 (02) :177-183
[19]  
NAMBU Y, 1989, ENRICO FERMI I PREPR
[20]  
Salam A., 1968, NOBEL S, P367