9–13 Sept 2026
Tsung-Dao Lee Institute
Asia/Shanghai timezone

Particle Production via Rippled Bubble Walls

12 Sept 2026, 17:20
20m
Tsung-Dao Lee Institute/S5F-S500 - Lecture Room (Tsung-Dao Lee Institute)

Tsung-Dao Lee Institute/S5F-S500 - Lecture Room

Tsung-Dao Lee Institute

Tsung-Dao Lee Institute, 1 Lisuo Road, Pudong New Area, Shanghai,201210
Oral Presentation Parallel talks (2A)

Speaker

Yaoduo Wang (TDLI)

Description

We investigate non-thermal particle production during first-order phase transitions in the presence of ultra-relativistic thick bubble walls with non-trivial internal structure. Extending the framework of bubble-expansion particle production, we consider bubble walls containing multiple ripples and study how such spatial modulations affect the production of heavy particles coupled to the order parameter field. By modeling an oscillatory thick-wall profile, we derive the transition probability for particle splitting processes in the wall background, and identify a new contribution associated with momentum transfer from the wall microstructure. In addition to the conventional channel, we find an enhanced production mode arising from resonant momentum exchange with the ripples. For sufficiently large numbers of ripples, the new contribution can dominate the production rate and significantly increase the abundance of particles much heavier than the phase transition scale. Our results demonstrate that the internal structure of expanding bubble walls can play an important role in particle production and should be taken into account when assessing the cosmological implications of strongly first-order phase transitions.

Authors

Prof. Ryusuke Jinno (Kobe University) Shota Nakagawa (Tsung-Dao Lee Institute, Shanghai Jiao Tong University) Yaoduo Wang (TDLI) Yuichiro Nakai

Presentation materials