A New Mechanism for Generating Particle Number Asymmetry through Interactions

A new mechanism for generating particle number asymmetry (PNA) has been developed. This mechanism is realized with a Lagrangian including a complex scalar field and a neutral scalar field. The complex scalar carries U(1) charge which is associated with the PNA. It is written in terms of the condensa...

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Main Authors: Takuya Morozumi, Keiko I. Nagao, Apriadi Salim Adam, Hiroyuki Takata
Format: Article
Language:English
Published: Hindawi Limited 2019-01-01
Series:Advances in High Energy Physics
Online Access:http://dx.doi.org/10.1155/2019/6825104
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spelling doaj-6463452e63ec425181c3014a6556e4e52020-11-24T21:09:43ZengHindawi LimitedAdvances in High Energy Physics1687-73571687-73652019-01-01201910.1155/2019/68251046825104A New Mechanism for Generating Particle Number Asymmetry through InteractionsTakuya Morozumi0Keiko I. Nagao1Apriadi Salim Adam2Hiroyuki Takata3Graduate School of Science, Hiroshima University, Higashi-Hiroshima, 739-8526, JapanNational Institute of Technology, Niihama College, Ehime, 792-8580, JapanGraduate School of Science, Hiroshima University, Higashi-Hiroshima, 739-8526, JapanTomsk State Pedagogical University, Tomsk, 634061, RussiaA new mechanism for generating particle number asymmetry (PNA) has been developed. This mechanism is realized with a Lagrangian including a complex scalar field and a neutral scalar field. The complex scalar carries U(1) charge which is associated with the PNA. It is written in terms of the condensation and Green’s function, which is obtained with two-particle irreducible (2PI) closed time path (CTP) effective action (EA). In the spatially flat universe with a time-dependent scale factor, the time evolution of the PNA is computed. We start with an initial condition where only the condensation of the neutral scalar is nonzero. The initial condition for the fields is specified by a density operator parameterized by the temperature of the universe. With the above initial conditions, the PNA vanishes at the initial time and later it is generated through the interaction between the complex scalar and the condensation of the neutral scalar. We investigate the case that both the interaction and the expansion rate of the universe are small and include their effects up to the first order of the perturbation. The expanding universe causes the effects of the dilution of the PNA, freezing interaction, and the redshift of the particle energy. As for the time dependence of the PNA, we found that PNA oscillates at the early time and it begins to dump at the later time. The period and the amplitude of the oscillation depend on the mass spectrum of the model, the temperature, and the expansion rate of the universe.http://dx.doi.org/10.1155/2019/6825104
collection DOAJ
language English
format Article
sources DOAJ
author Takuya Morozumi
Keiko I. Nagao
Apriadi Salim Adam
Hiroyuki Takata
spellingShingle Takuya Morozumi
Keiko I. Nagao
Apriadi Salim Adam
Hiroyuki Takata
A New Mechanism for Generating Particle Number Asymmetry through Interactions
Advances in High Energy Physics
author_facet Takuya Morozumi
Keiko I. Nagao
Apriadi Salim Adam
Hiroyuki Takata
author_sort Takuya Morozumi
title A New Mechanism for Generating Particle Number Asymmetry through Interactions
title_short A New Mechanism for Generating Particle Number Asymmetry through Interactions
title_full A New Mechanism for Generating Particle Number Asymmetry through Interactions
title_fullStr A New Mechanism for Generating Particle Number Asymmetry through Interactions
title_full_unstemmed A New Mechanism for Generating Particle Number Asymmetry through Interactions
title_sort new mechanism for generating particle number asymmetry through interactions
publisher Hindawi Limited
series Advances in High Energy Physics
issn 1687-7357
1687-7365
publishDate 2019-01-01
description A new mechanism for generating particle number asymmetry (PNA) has been developed. This mechanism is realized with a Lagrangian including a complex scalar field and a neutral scalar field. The complex scalar carries U(1) charge which is associated with the PNA. It is written in terms of the condensation and Green’s function, which is obtained with two-particle irreducible (2PI) closed time path (CTP) effective action (EA). In the spatially flat universe with a time-dependent scale factor, the time evolution of the PNA is computed. We start with an initial condition where only the condensation of the neutral scalar is nonzero. The initial condition for the fields is specified by a density operator parameterized by the temperature of the universe. With the above initial conditions, the PNA vanishes at the initial time and later it is generated through the interaction between the complex scalar and the condensation of the neutral scalar. We investigate the case that both the interaction and the expansion rate of the universe are small and include their effects up to the first order of the perturbation. The expanding universe causes the effects of the dilution of the PNA, freezing interaction, and the redshift of the particle energy. As for the time dependence of the PNA, we found that PNA oscillates at the early time and it begins to dump at the later time. The period and the amplitude of the oscillation depend on the mass spectrum of the model, the temperature, and the expansion rate of the universe.
url http://dx.doi.org/10.1155/2019/6825104
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