物理
重子不对称
弱电相互作用
CP违规
粒子物理学
不对称
标准模型(数学公式)
相变
夸克
重子数
重子
超充电
反射(计算机编程)
订单(交换)
超出标准模型的物理
准粒子
轻子
核物理学
量子力学
电子
超导电性
考古
财务
量具(枪械)
计算机科学
经济
历史
程序设计语言
作者
M.B. Gavela,Pilar Hernández,J. Orloff,O. Pène
标识
DOI:10.1142/s0217732394000629
摘要
In CP arguments, we argue against a Standard Model explanation of the baryon asymmetry of the universe in the presence of a first order phase transition. A CP-asymmetry is found in the reflection coefficients of quarks hitting the phase boundary created during the electroweak transition. The problem is analyzed both in an academic zero temperature case and in the realistic finite temperature one. The building blocks are similar in both cases: Kobayashi-Maskawa CP-violation, CP-even phases in the reflection coefficients of quarks, and physical transitions due to fermion self-energies. In both cases an effect is present at order [Formula: see text] in rate. A regular GIM behavior is found as intuitively expected. In the finite temperature case, a crucial role is played by the damping rate of quasiparticles in a hot plasma, which is a relevant scale together with M W and the temperature. The effect is many orders of magnitude below what observation requires, and indicates that non-standard physics is indeed needed in the cosmological scenario.
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