Walking-dilaton hybrid inflation with B − L Higgs embedded in dynamical scalegenesis
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- Jie Liu
- Jilin University
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- He-Xu Zhang
- Jilin University
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- Shinya Matsuzaki
- Jilin University
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- Hiroyuki Ishida
- Toyama Prefectural University
書誌事項
- 公開日
- 2024-10-09
- 資源種別
- journal article
- 権利情報
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- https://creativecommons.org/licenses/by/4.0
- https://creativecommons.org/licenses/by/4.0
- DOI
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- 10.1007/jhep10(2024)069
- 公開者
- Springer Science and Business Media LLC
説明
<jats:title>A<jats:sc>bstract</jats:sc> </jats:title> <jats:p>We propose a hybrid inflationary scenario based on eight-flavor hidden QCD with the hidden colored fermions being in part gauged under U(1)<jats:sub> <jats:italic>B−L</jats:italic> </jats:sub>. This hidden QCD is almost scale-invariant, so-called walking, and predicts the light scalar meson (the walking dilaton) associated with the spontaneous scale breaking, which develops the Coleman-Weinberg (CW) type potential as the consequence of the nonperturbative scale anomaly, hence plays the role of an inflaton of the small-field inflation. The U(1)<jats:sub> <jats:italic>B−L</jats:italic> </jats:sub> Higgs is coupled to the walking dilaton inflaton, which is dynamically induced from the so-called bosonic seesaw mechanism. We explore the hybrid inflation system involving the walking dilaton inflaton and the U(1)<jats:sub> <jats:italic>B−L</jats:italic> </jats:sub> Higgs as a waterfall field. We find that observed inflation parameters tightly constrain the U(1)<jats:sub> <jats:italic>B−L</jats:italic> </jats:sub> breaking scale as well as the walking dynamical scale to be ~ 10<jats:sup>9</jats:sup> GeV and ~ 10<jats:sup>14</jats:sup> GeV, respectively, so as to make the waterfall mechanism worked. The lightest walking pion mass is then predicted to be around 500 GeV. Phenomenological perspectives including embedding of the dynamical electroweak scalegenesis and possible impacts on the thermal leptogenesis are also addressed.</jats:p>
収録刊行物
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- Journal of High Energy Physics
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Journal of High Energy Physics 2024 (10), 2024-10-09
Springer Science and Business Media LLC
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詳細情報 詳細情報について
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- CRID
- 1360025430198618752
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- ISSN
- 10298479
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- 資料種別
- journal article
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- データソース種別
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- Crossref
- KAKEN

