DW-genesis: baryon number from domain wall network collapse

Fuente: arXiv
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Main Authors: Mariotti, Alberto, Nagels, Xander, Rase, Aäron, Vanvlasselaer, Miguel
Format: Preprint
Published: 2024
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author Mariotti, Alberto
Nagels, Xander
Rase, Aäron
Vanvlasselaer, Miguel
author_facet Mariotti, Alberto
Nagels, Xander
Rase, Aäron
Vanvlasselaer, Miguel
contents Axionic domain walls, as they move through the early universe plasma during their collapse, can generate a net baryon and lepton number through the mechanism of spontaneous baryogenesis, provided that there is a coupling between the axion and the lepton or baryon current. In this paper, we study systematically the baryon asymmetry produced by these domain walls (DWs) at annihilation, within different realisations of the $L$- or $B$-violating sector, and refer to this process as DW-genesis. We find that the baryon number is maximised when the DW network collapses approximately at the moment when the $L$- or $B$-violating interaction decouples. We study a model of minimal leptogenesis, a model of cogenesis, a model of baryogenesis and finally the possibility that the baryon asymmetry is produced by electroweak sphalerons. As phenomenological consequences of DW-genesis, we discuss the expected gravitational wave signal from the DW network annihilation and the prospects for detecting it. However, we finally emphasize that in realisations of the DW-genesis in minimal post-inflationary scenarios, there is a suppression induced by the cancellation between the asymmetry created by "opposite" axionic domain walls attached to the string. We quantify the impact of this cancellation and discuss possible ways to avoid it.
format Preprint
id arxiv_https___arxiv_org_abs_2411_13494
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle DW-genesis: baryon number from domain wall network collapse
Mariotti, Alberto
Nagels, Xander
Rase, Aäron
Vanvlasselaer, Miguel
High Energy Physics - Phenomenology
Axionic domain walls, as they move through the early universe plasma during their collapse, can generate a net baryon and lepton number through the mechanism of spontaneous baryogenesis, provided that there is a coupling between the axion and the lepton or baryon current. In this paper, we study systematically the baryon asymmetry produced by these domain walls (DWs) at annihilation, within different realisations of the $L$- or $B$-violating sector, and refer to this process as DW-genesis. We find that the baryon number is maximised when the DW network collapses approximately at the moment when the $L$- or $B$-violating interaction decouples. We study a model of minimal leptogenesis, a model of cogenesis, a model of baryogenesis and finally the possibility that the baryon asymmetry is produced by electroweak sphalerons. As phenomenological consequences of DW-genesis, we discuss the expected gravitational wave signal from the DW network annihilation and the prospects for detecting it. However, we finally emphasize that in realisations of the DW-genesis in minimal post-inflationary scenarios, there is a suppression induced by the cancellation between the asymmetry created by "opposite" axionic domain walls attached to the string. We quantify the impact of this cancellation and discuss possible ways to avoid it.
title DW-genesis: baryon number from domain wall network collapse
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2411.13494