25-29 September 2025
北京春晖园温泉度假酒店(Chun Hui Yuan Hot Spring Resort Hotel)
Asia/Shanghai timezone

Bubble wall velocity from Kadanoff-Baym equations: fluid dynamics and microscopic interactions

27 Sep 2025, 17:30
30m
北京春晖园温泉度假酒店(Chun Hui Yuan Hot Spring Resort Hotel)

北京春晖园温泉度假酒店(Chun Hui Yuan Hot Spring Resort Hotel)

北京市顺义区高泗路于庄段37号

Speaker

Jiang Zhu (Shanghai jiao tong univercity)

Description

We establish a first principles, systematic framework for determining the bubble wall velocity during a first order cosmological phase transition. This framework, based on non-local Kadanoff-Baym equations, incorporates both macroscopic fluid dynamics and microscopic interactions between the bubble wall and particles in the plasma. Previous studies have generally focused on one of these two sources of friction pressure that govern the wall velocity. As a precursor, we utilize background field quantum field theory to obtain the relevant local Boltzmann equations, from which we derive the forces associated with variation of particle masses across the bubble wall and the microscopic wall-particle interactions. We subsequently show how these equations emerge from the Kadanoff-Baym framework under various approximations. We apply this framework in the ballistic regime to compute the new friction force arising from the $2\rightarrow 2$ scattering processes in scalar field theory. We obtain a linear relationship between this force and the Lorentz factor $\gamma_w$ that would preclude runaway bubbles with such effects.

Primary authors

Jiang Zhu (Shanghai jiao tong univercity) Michael Ramsey-Musolf (TDLI-SJTU)

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