Correlative study of flavor anomalies and dark matter in the light of scalar leptoquark

Fuente: arXiv
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Autores principales: Mohapatra, Manas Kumar, Singirala, Shivaramakrishna, Panda, Dhiren, Mohanta, Rukmani
Formato: Preprint
Publicado: 2024
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author Mohapatra, Manas Kumar
Singirala, Shivaramakrishna
Panda, Dhiren
Mohanta, Rukmani
author_facet Mohapatra, Manas Kumar
Singirala, Shivaramakrishna
Panda, Dhiren
Mohanta, Rukmani
contents We explore $U(1)_{L_e-L_μ}$ gauge extension of the Standard Model with particle content enlarged by three neutral fermions, of which the lightest one contributes to dark matter content of the Universe. The scalar sector is enriched with a $\tilde{R}_2$ scalar leptoquark doublet to investigate flavor anomalies in $B$-meson sector, an additional inert scalar doublet to realize neutrino mass at one loop and a scalar singlet to spontaneously break the new $U(1)$. We discuss dark matter relic density and direct detection cross section in scalar and gauge portals. New physics contribution for $b \to s$ transition comes from penguin diagrams with $Z^\prime$, leptquark and new fermions. We analyze the constraints on the model parameters from the established observables of $B \to K^{(*)} μ^+ μ^-$ and $B_s\to ϕμ^+ μ^-$ decay channels. Utilizing the permissible parameter space consistent with both flavor and dark sectors, we discuss the impact on various observables such as branching ratio, forward-backward asymmetry, longitudinal polarisation asymmetry, and also lepton non-universality of $Λ_b \to Λ^* (1520) (\to pK) \ell ^+\ell ^-$ decay channel.
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id arxiv_https___arxiv_org_abs_2409_16961
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Correlative study of flavor anomalies and dark matter in the light of scalar leptoquark
Mohapatra, Manas Kumar
Singirala, Shivaramakrishna
Panda, Dhiren
Mohanta, Rukmani
High Energy Physics - Phenomenology
We explore $U(1)_{L_e-L_μ}$ gauge extension of the Standard Model with particle content enlarged by three neutral fermions, of which the lightest one contributes to dark matter content of the Universe. The scalar sector is enriched with a $\tilde{R}_2$ scalar leptoquark doublet to investigate flavor anomalies in $B$-meson sector, an additional inert scalar doublet to realize neutrino mass at one loop and a scalar singlet to spontaneously break the new $U(1)$. We discuss dark matter relic density and direct detection cross section in scalar and gauge portals. New physics contribution for $b \to s$ transition comes from penguin diagrams with $Z^\prime$, leptquark and new fermions. We analyze the constraints on the model parameters from the established observables of $B \to K^{(*)} μ^+ μ^-$ and $B_s\to ϕμ^+ μ^-$ decay channels. Utilizing the permissible parameter space consistent with both flavor and dark sectors, we discuss the impact on various observables such as branching ratio, forward-backward asymmetry, longitudinal polarisation asymmetry, and also lepton non-universality of $Λ_b \to Λ^* (1520) (\to pK) \ell ^+\ell ^-$ decay channel.
title Correlative study of flavor anomalies and dark matter in the light of scalar leptoquark
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2409.16961