Thermal real scalar triplet dark matter

Abstract Real scalar triplet dark matter, which is known to be an attractive candidate for a thermal WIMP, is comprehensively studied paying particular attention to the Sommerfeld effect on the dark matter annihilation caused by the weak interaction and the other interaction between the dark matter...

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Main Authors: Taisuke Katayose, Shigeki Matsumoto, Satoshi Shirai, Yu Watanabe
Format: Article
Language:English
Published: SpringerOpen 2021-09-01
Series:Journal of High Energy Physics
Subjects:
Online Access:https://doi.org/10.1007/JHEP09(2021)044
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author Taisuke Katayose
Shigeki Matsumoto
Satoshi Shirai
Yu Watanabe
author_facet Taisuke Katayose
Shigeki Matsumoto
Satoshi Shirai
Yu Watanabe
author_sort Taisuke Katayose
collection DOAJ
description Abstract Real scalar triplet dark matter, which is known to be an attractive candidate for a thermal WIMP, is comprehensively studied paying particular attention to the Sommerfeld effect on the dark matter annihilation caused by the weak interaction and the other interaction between the dark matter and the Higgs boson. We find a parameter region that includes the so-called ‘WIMP-Miracle’ one is still surviving, i.e. it respects all constraints imposed by dark matter searches at collider experiments, underground experiments (direct detection) and astrophysical observations (indirect detection). The region is also found to be efficiently searched for by various near future experiments. In particular, the XENONnT experiment will cover almost the entire parameter region.
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spelling doaj.art-d79e50a864f34036b016bea226643a6c2022-12-21T22:09:15ZengSpringerOpenJournal of High Energy Physics1029-84792021-09-012021912210.1007/JHEP09(2021)044Thermal real scalar triplet dark matterTaisuke Katayose0Shigeki Matsumoto1Satoshi Shirai2Yu Watanabe3Department of Physics, Osaka UniversityKavli IPMU (WPI), UTIAS, University of TokyoKavli IPMU (WPI), UTIAS, University of TokyoKavli IPMU (WPI), UTIAS, University of TokyoAbstract Real scalar triplet dark matter, which is known to be an attractive candidate for a thermal WIMP, is comprehensively studied paying particular attention to the Sommerfeld effect on the dark matter annihilation caused by the weak interaction and the other interaction between the dark matter and the Higgs boson. We find a parameter region that includes the so-called ‘WIMP-Miracle’ one is still surviving, i.e. it respects all constraints imposed by dark matter searches at collider experiments, underground experiments (direct detection) and astrophysical observations (indirect detection). The region is also found to be efficiently searched for by various near future experiments. In particular, the XENONnT experiment will cover almost the entire parameter region.https://doi.org/10.1007/JHEP09(2021)044Beyond Standard ModelHiggs Physics
spellingShingle Taisuke Katayose
Shigeki Matsumoto
Satoshi Shirai
Yu Watanabe
Thermal real scalar triplet dark matter
Journal of High Energy Physics
Beyond Standard Model
Higgs Physics
title Thermal real scalar triplet dark matter
title_full Thermal real scalar triplet dark matter
title_fullStr Thermal real scalar triplet dark matter
title_full_unstemmed Thermal real scalar triplet dark matter
title_short Thermal real scalar triplet dark matter
title_sort thermal real scalar triplet dark matter
topic Beyond Standard Model
Higgs Physics
url https://doi.org/10.1007/JHEP09(2021)044
work_keys_str_mv AT taisukekatayose thermalrealscalartripletdarkmatter
AT shigekimatsumoto thermalrealscalartripletdarkmatter
AT satoshishirai thermalrealscalartripletdarkmatter
AT yuwatanabe thermalrealscalartripletdarkmatter