Long-lived Axion-Like Particles from Tau Decays

Fuente: arXiv
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Auteurs principaux: Ema, Yohei, Fox, Patrick J., Hostert, Matheus, Menzo, Tony, Pospelov, Maxim, Ray, Anupam, Zupan, Jure
Format: Preprint
Publié: 2025
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author Ema, Yohei
Fox, Patrick J.
Hostert, Matheus
Menzo, Tony
Pospelov, Maxim
Ray, Anupam
Zupan, Jure
author_facet Ema, Yohei
Fox, Patrick J.
Hostert, Matheus
Menzo, Tony
Pospelov, Maxim
Ray, Anupam
Zupan, Jure
contents Axion-like particles (ALPs) are well-motivated examples of light, weakly coupled particles in theories beyond the Standard Model. In this work, we study long-lived ALPs coupled exclusively to leptons in the mass range between $2 m_e$ and $m_τ- m_e$. For anarchic flavor structure the leptophilic ALP production in tau decays or from ALP-tau bremsstrahlung is enhanced thanks to derivative couplings of the ALP and can surpass production from electron and muon channels, especially for ALPs heavier than $m_μ$. Using past data from high-energy fixed-target experiments such as CHARM and BEBC we place new constraints on the ALP decay constant $f_a$, reaching scales as high as $\mathcal{O}(10^8)$~GeV in lepton-flavor-violating channels and $f_a \sim \mathcal{O}(10^2)$~GeV in lepton-flavor-conserving ones. We also present projections for the event-rate sensitivity of current and future detectors to ALPs produced at the Fermilab Main Injector, the CERN SPS, and in the forward direction of the LHC. We show that SHiP will be sensitive to $f_a$ values that are over an order of magnitude above the existing constraints.
format Preprint
id arxiv_https___arxiv_org_abs_2507_15271
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Long-lived Axion-Like Particles from Tau Decays
Ema, Yohei
Fox, Patrick J.
Hostert, Matheus
Menzo, Tony
Pospelov, Maxim
Ray, Anupam
Zupan, Jure
High Energy Physics - Phenomenology
High Energy Physics - Experiment
Axion-like particles (ALPs) are well-motivated examples of light, weakly coupled particles in theories beyond the Standard Model. In this work, we study long-lived ALPs coupled exclusively to leptons in the mass range between $2 m_e$ and $m_τ- m_e$. For anarchic flavor structure the leptophilic ALP production in tau decays or from ALP-tau bremsstrahlung is enhanced thanks to derivative couplings of the ALP and can surpass production from electron and muon channels, especially for ALPs heavier than $m_μ$. Using past data from high-energy fixed-target experiments such as CHARM and BEBC we place new constraints on the ALP decay constant $f_a$, reaching scales as high as $\mathcal{O}(10^8)$~GeV in lepton-flavor-violating channels and $f_a \sim \mathcal{O}(10^2)$~GeV in lepton-flavor-conserving ones. We also present projections for the event-rate sensitivity of current and future detectors to ALPs produced at the Fermilab Main Injector, the CERN SPS, and in the forward direction of the LHC. We show that SHiP will be sensitive to $f_a$ values that are over an order of magnitude above the existing constraints.
title Long-lived Axion-Like Particles from Tau Decays
topic High Energy Physics - Phenomenology
High Energy Physics - Experiment
url https://arxiv.org/abs/2507.15271