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      Electroweak baryogenesis in the Z3-invariant NMSSM

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          Abstract

          We calculate the baryon asymmetry of the Universe in the Z3-invariant Next-to-Minimal Supersymmetric Standard Model where the interactions of the singlino provide the necessary source of charge and parity violation. Using the closed time path formalism, we derive and solve transport equations for the cases where the singlet acquires a vacuum expectation value (VEV) before and during the electroweak phase transition. We perform a detailed scan to show how the baryon asymmetry varies throughout the relevant parameter space. Our results show that the case where the singlet acquires a VEV during the electroweak phase transition typically generates a larger baryon asymmetry, although we expect that the case where the singlet acquires a VEV first is far more common for any model in which parameters unify at a high scale. Finally, we examine the dependence of the baryon asymmetry on the three-body interactions involving gauge singlets.

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          Brownian Motion of a Quantum Oscillator

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            Theory of Many-Particle Systems. I

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                Author and article information

                Journal
                2017-06-29
                Article
                1706.09898
                124a5a13-0019-4838-a0ac-beae30be6c28

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

                History
                Custom metadata
                23 pages
                hep-ph

                High energy & Particle physics
                High energy & Particle physics

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