论文标题
两步电动相过渡的热力学
Thermodynamics of a two-step electroweak phase transition
论文作者
论文摘要
粒子物理标准模型超出标准模型的新田间内容可以改变早期宇宙中电子对称性破坏的热历史。特别是,对称性破裂可能是通过一系列连续的相变而发生的。我们使用非扰动晶格模拟研究了标准模型的真实三重态扩展中,我们研究了这种情况的热力学。发现两步电动相变发生在允许的参数空间的狭窄区域中,第二个过渡始终是一阶。在两步参数空间的不可忽略的部分中,第一个过渡到非逐渐变化的三重真空期望值的相位是一阶。提供了与2环扰动计算的比较,并确定了与非扰动结果的显着差异。
New field content beyond that of the Standard Model of particle physics can alter the thermal history of electroweak symmetry breaking in the early universe. In particular, the symmetry breaking may have occurred through a sequence of successive phase transitions. We study the thermodynamics of such scenario in a real triplet extension of the Standard Model, using nonperturbative lattice simulations. Two-step electroweak phase transition is found to occur in a narrow region of allowed parameter space with the second transition always being first order. The first transition into the phase of non-vanishing triplet vacuum expectation value is first order in a non-negligible portion of the two-step parameter space. A comparison with 2-loop perturbative calculation is provided and significant discrepancies with the nonperturbative results are identified.