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November 8, 20250 citationsOpen Access

Investigation of the l^-l^+νν final state at multi-TeV muon colliders through the exclusive decay of ZZ/WW gauge bosons in the Randall-Sundrum model

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BGBui Thi Ha GiangDSDang Van Soa

Key Points

  • Cross-sections for $l^{-}l^{+}ν\overline{ν}$ production depend on unparticle physics parameters and polarization.
  • The analysis shows that more significant cross-sections are achieved with same polarization among muon beams.
  • Investigations into the exclusive decay of WW gauge bosons lead to larger cross-sections compared to ZZ bosons in the final state.
  • Results highlight the implications of muon polarization coefficients in high-energy collider experiments.

Abstract

An attempt is made to present the effect of the exclusive decay of ZZ/WW gauge bosons at high energy colliders in the Randall-Sundrum (RS) model. In this paper, we investigate the l^-l^+νν final state at muon-TeV colliders through the exclusive decay of ZZ/WW gauge bosons in detail. The result shows that with fixed collision energies, cross-sections for l^-l^+νν production in final state depend strongly on the parameters of the unparticle physics, muon polarization coefficients, parameters on anomalous couplings and also KK-graviton propagators. With the benchmark background (Λₔ, dₔ) = (1 TeV, 1. 9), the total cross-sections achieve the maximum value when both of muon beams polarize left or right. In case of the different polarization, the cross section increases as the collision energy increases. The numerical evaluation shows that the cross-section for l^-l^+νν final state through the exclusive decay of WW charged bosons is much larger than that of ZZ neutral bosons under the same conditions, which can be detected in the future muon collisions.

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Cite This Study

Giang et al. (2025) studied this question.

synapsesocial.com/papers/690e8b75a5b062d7a4e73957https://doi.org/10.48550/arxiv.2510.02638
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