Recent $B^+ \!\to K^+ν\barν$ excess and muon $g-2$ illuminating light dark sector with Higgs portal

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Autori principali: Ho, Shu-Yu, Kim, Jongkuk, Ko, Pyungwon
Natura: Preprint
Pubblicazione: 2024
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author Ho, Shu-Yu
Kim, Jongkuk
Ko, Pyungwon
author_facet Ho, Shu-Yu
Kim, Jongkuk
Ko, Pyungwon
contents The Belle II collaboration recently announced that they observed the $B^+ \!\to K^+ν\barν$ decay process for the first time. This dineutrino mode of $B^+ \!\to K^+ν\barν$ has been theoretically identified as a very clean channel. However, their result encounters a $2.7{}^{}σ$ deviation from the Standard Model (SM) calculation. On the other hand, last year, Fermilab released new data on muon $g-2$ away from the SM expectation with $5{}^{}σ$. In this letter, we study the simplest UV-complete $\text{U}(1)_{\textsf{L}_μ- \textsf{L}_τ}^{}$-charged complex scalar Dark Matter (DM) model. Thanks to the existence of light dark Higgs boson and light dark photon, we can explain the observed relic density of DM and resolve the results reported by both Belle II and Fermilab experiments simultaneously. As a byproduct, the Hubble tension is alleviated by taking $ΔN_\textsf{eff}^{} \simeq 0.3$ induced by the light dark photon.
format Preprint
id arxiv_https___arxiv_org_abs_2401_10112
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Recent $B^+ \!\to K^+ν\barν$ excess and muon $g-2$ illuminating light dark sector with Higgs portal
Ho, Shu-Yu
Kim, Jongkuk
Ko, Pyungwon
High Energy Physics - Phenomenology
High Energy Physics - Experiment
The Belle II collaboration recently announced that they observed the $B^+ \!\to K^+ν\barν$ decay process for the first time. This dineutrino mode of $B^+ \!\to K^+ν\barν$ has been theoretically identified as a very clean channel. However, their result encounters a $2.7{}^{}σ$ deviation from the Standard Model (SM) calculation. On the other hand, last year, Fermilab released new data on muon $g-2$ away from the SM expectation with $5{}^{}σ$. In this letter, we study the simplest UV-complete $\text{U}(1)_{\textsf{L}_μ- \textsf{L}_τ}^{}$-charged complex scalar Dark Matter (DM) model. Thanks to the existence of light dark Higgs boson and light dark photon, we can explain the observed relic density of DM and resolve the results reported by both Belle II and Fermilab experiments simultaneously. As a byproduct, the Hubble tension is alleviated by taking $ΔN_\textsf{eff}^{} \simeq 0.3$ induced by the light dark photon.
title Recent $B^+ \!\to K^+ν\barν$ excess and muon $g-2$ illuminating light dark sector with Higgs portal
topic High Energy Physics - Phenomenology
High Energy Physics - Experiment
url https://arxiv.org/abs/2401.10112