Hunting long-lived doubly charged scalars at the HL-LHC
Biplob Bhattacherjee, Rituparna Ghosh, Swagata Mukherjee, Nabin Kumar Pidikaka
Abstract
This work studies the collider phenomenology of long-lived doubly charged scalars. After reviewing the existing searches for the doubly charged scalar in both the prompt and the long-lived regimes, we identify an intermediate range of proper decay length, namely, O(0.1~mm) cτ O(100~mm), where conventional searches lose sensitivity. We investigate the prospects for probing the doubly charged scalar both in the presence and in the absence of the ΔL=2 Yukawa coupling of the SU(2)L complex triplet. In the presence of this coupling, H can be long-lived only for masses in the range 100-150~GeV, whereas in the fermiophobic scenario (i.e., in the absence of the ΔL=2 coupling), the range extends to TeV scale. We propose a displaced-vertex search at the HL-LHC for doubly charged scalars with masses up to ≈ 1~TeV and cτ=10-100~mm in the fermiophobic scenario, while a benchmark point with a doubly charged scalar of mass 120~GeV and cτ= 5~mm is considered when the complex triplet scalar couples to leptons. We show that a cut on the invariant mass of the displaced vertex as reconstructed from the associated tracks can strongly suppress Standard Model backgrounds. We present projected limits on the Drell-Yan pair-production cross section for the doubly charged scalar at s=14~TeV with an integrated luminosity of 3000~fb-1, considering two illustrative assumptions for the residual background. Displaced-vertex searches thus probe a region complementary to those covered by prompt and heavy stable charged-particle searches.
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