Lepton Number Violation Higgs Decay at Muon Collider

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Hauptverfasser: Yang, Fa-Xin, Shao, Feng-Lan, Han, Zhi-Long, Huang, Fei, Jin, Yi, Li, Honglei
Format: Preprint
Veröffentlicht: 2025
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author Yang, Fa-Xin
Shao, Feng-Lan
Han, Zhi-Long
Huang, Fei
Jin, Yi
Li, Honglei
author_facet Yang, Fa-Xin
Shao, Feng-Lan
Han, Zhi-Long
Huang, Fei
Jin, Yi
Li, Honglei
contents In this paper, we consider the scalar singlet extension of type-I seesaw, where a scalar singlet $S$ and heavy neutral lepton $N$ are further introduced. The Majorana mass term of heavy neutral lepton is generated through the Yukawa interaction with the scalar singlet, which then induces the lepton number violation decays of SM Higgs $h$ and heavy Higgs $H$ via mixing of scalars. As a pathway to probe the origin of heavy neutral lepton mass, we investigate the lepton number violation Higgs decay signature at the TeV-scale muon collider. The dominant production channel of Higgs bosons at the TeV-scale muon collider is via vector boson fusion. So we perform a detailed analysis of the signal process $μ^+μ^-\to ν_μ\barν_μh/H \to ν_μ\barν_μNN $ followed by $ N \to μ^\pm jj$, where the two jets from $W$ boson decay are treated as one fat-jet $J$. With an integrated luminosity of $1(10)~\text{ab}^{-1}$, the 3 (10) TeV muon collider could discover the lepton number violation SM Higgs decay $h\to μ^\pmμ^\pm JJ$ signature for the Higgs mixing parameter $\sinα>0.05(0.009)$. Meanwhile, a large parameter space can be detected by the lepton number violation heavy Higgs decay $H\to μ^\pmμ^\pm JJ$ signature for $m_H\lesssim1 (3)$ TeV and $\sinα\gtrsim0.03(0.005)$ at the 3 (10) TeV muon collider. Therefore, the lepton number violation SM and heavy Higgs decay signatures are both promising at the TeV scale muon collider.
format Preprint
id arxiv_https___arxiv_org_abs_2505_07331
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Lepton Number Violation Higgs Decay at Muon Collider
Yang, Fa-Xin
Shao, Feng-Lan
Han, Zhi-Long
Huang, Fei
Jin, Yi
Li, Honglei
High Energy Physics - Phenomenology
High Energy Physics - Experiment
In this paper, we consider the scalar singlet extension of type-I seesaw, where a scalar singlet $S$ and heavy neutral lepton $N$ are further introduced. The Majorana mass term of heavy neutral lepton is generated through the Yukawa interaction with the scalar singlet, which then induces the lepton number violation decays of SM Higgs $h$ and heavy Higgs $H$ via mixing of scalars. As a pathway to probe the origin of heavy neutral lepton mass, we investigate the lepton number violation Higgs decay signature at the TeV-scale muon collider. The dominant production channel of Higgs bosons at the TeV-scale muon collider is via vector boson fusion. So we perform a detailed analysis of the signal process $μ^+μ^-\to ν_μ\barν_μh/H \to ν_μ\barν_μNN $ followed by $ N \to μ^\pm jj$, where the two jets from $W$ boson decay are treated as one fat-jet $J$. With an integrated luminosity of $1(10)~\text{ab}^{-1}$, the 3 (10) TeV muon collider could discover the lepton number violation SM Higgs decay $h\to μ^\pmμ^\pm JJ$ signature for the Higgs mixing parameter $\sinα>0.05(0.009)$. Meanwhile, a large parameter space can be detected by the lepton number violation heavy Higgs decay $H\to μ^\pmμ^\pm JJ$ signature for $m_H\lesssim1 (3)$ TeV and $\sinα\gtrsim0.03(0.005)$ at the 3 (10) TeV muon collider. Therefore, the lepton number violation SM and heavy Higgs decay signatures are both promising at the TeV scale muon collider.
title Lepton Number Violation Higgs Decay at Muon Collider
topic High Energy Physics - Phenomenology
High Energy Physics - Experiment
url https://arxiv.org/abs/2505.07331