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Damping rates in the MSSM and electroweak baryogenesis

Per Elmfors, Kari Enqvist, Antonio Riotto, Iiro Vilja

Abstract

We present an analysis of the thermalization rate of Higgsinos and winos based on the imaginary part of the two-point Green function in the {\it unbroken} phase of the MSSM. We use improved propagators including resummation of hard thermal loops and the thermalization rate is computed at the one-loop level in the high temperature approximation. We find that the damping is typically dominated by scattering with gauge bosons, resulting in a damping rate of about $γ_{\Ht}\simeq 0.025T$, $γ_{\Wt}\simeq 0.065T$. The contribution from scattering with scalars is relatively small. Implications for baryogenesis are also discussed.

Damping rates in the MSSM and electroweak baryogenesis

Abstract

We present an analysis of the thermalization rate of Higgsinos and winos based on the imaginary part of the two-point Green function in the {\it unbroken} phase of the MSSM. We use improved propagators including resummation of hard thermal loops and the thermalization rate is computed at the one-loop level in the high temperature approximation. We find that the damping is typically dominated by scattering with gauge bosons, resulting in a damping rate of about , . The contribution from scattering with scalars is relatively small. Implications for baryogenesis are also discussed.

Paper Structure

This paper contains 1 section, 9 equations, 1 figure.

Table of Contents

  1. Acknowledgments