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Towards a Nonequilibrium Quantum Field Theory Approach to Electroweak Baryogenesis
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abstract
We propose a general method to compute $CP$-violating observables from extensions of the standard model in the context of electroweak baryogenesis. It is alternative to the one recently developed by Huet and Nelson and relies on a nonequilibrium quantum field theory approach. The method is valid for all shapes and sizes of the bubble wall expanding in the thermal bath during a first-order electroweak phase transition. The quantum physics of $CP$-violation and its suppression coming from the incoherent nature of thermal processes are also made explicit.
Forward citations
Cited by 2 Pith papers
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Systematic derivation of the Boltzmann equation for electroweak baryogenesis
A Kadanoff-Baym derivation yields Boltzmann equations with self-energy-corrected quasiparticle shells, adding a CP-violating velocity and force correction for fermions and none for bosons.
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The Discriminant Power of Bubble Wall Velocities: Gravitational Waves and Electroweak Baryogenesis
Using entropy conservation in local thermal equilibrium, the authors compute bubble wall velocities in singlet-extended models and find a near-universal relation between phase transition strength measures, with conseq...
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