Characterizing Dark Bosons at Chiral Belle

Fuente: arXiv
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Main Authors: de Lima, Carlos Henrique, McKeen, David, Omar, Afif, Tuckler, Douglas
Format: Preprint
Published: 2025
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author de Lima, Carlos Henrique
McKeen, David
Omar, Afif
Tuckler, Douglas
author_facet de Lima, Carlos Henrique
McKeen, David
Omar, Afif
Tuckler, Douglas
contents We explore the advantages of a polarized electron beam at Belle II, as proposed for ``Chiral Belle'', in the search for invisibly decaying (dark) bosons that weakly couple to the Standard Model. By measuring the polarization dependence of the production cross section of dark bosons in association with a photon, the dark boson's spin and Lorentz structure of its couplings can potentially be determined. We analyze the mono-photon channel, $e^+ e^- \rightarrow γ+ \text{invisible}$, in detail, focusing on the production of an on-shell spin-1 boson. We explore this in the context of three separate scenarios for a new dark vector: a dark photon, a mass-mixed ``dark $Z$'', and a vector that couples to right-handed electrons, and estimate how well the couplings of such bosons to electrons can be constrained in the event of a positive signal.
format Preprint
id arxiv_https___arxiv_org_abs_2507_15931
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Characterizing Dark Bosons at Chiral Belle
de Lima, Carlos Henrique
McKeen, David
Omar, Afif
Tuckler, Douglas
High Energy Physics - Phenomenology
High Energy Physics - Experiment
We explore the advantages of a polarized electron beam at Belle II, as proposed for ``Chiral Belle'', in the search for invisibly decaying (dark) bosons that weakly couple to the Standard Model. By measuring the polarization dependence of the production cross section of dark bosons in association with a photon, the dark boson's spin and Lorentz structure of its couplings can potentially be determined. We analyze the mono-photon channel, $e^+ e^- \rightarrow γ+ \text{invisible}$, in detail, focusing on the production of an on-shell spin-1 boson. We explore this in the context of three separate scenarios for a new dark vector: a dark photon, a mass-mixed ``dark $Z$'', and a vector that couples to right-handed electrons, and estimate how well the couplings of such bosons to electrons can be constrained in the event of a positive signal.
title Characterizing Dark Bosons at Chiral Belle
topic High Energy Physics - Phenomenology
High Energy Physics - Experiment
url https://arxiv.org/abs/2507.15931