English

A light sneutrino rescues the light stop

High Energy Physics - Phenomenology 2017-05-24 v1

Abstract

Stop searches in supersymmetric frameworks with RR-parity conservation usually assume the lightest neutralino to be the lightest supersymmetric particle. In this paper we consider an alternative scenario in which the left-handed tau sneutrino is lighter than neutralinos and stable at collider scales, but possibly unstable at cosmological scales. Moreover the (mostly right-handed) stop t~\widetilde t is lighter than all electroweakinos, and heavier than the scalars of the third generation doublet, whose charged component, τ~\widetilde\tau, is heavier than the neutral one, ν~\widetilde\nu. The remaining supersymmetric particles are decoupled from the stop phenomenology. In most of the parameter space, the relevant stop decays are only into tτ~τt \widetilde\tau \tau, tν~νt\widetilde\nu\nu and bν~τb \widetilde\nu \tau via off-shell electroweakinos. We constrain the branching ratios of these decays by recasting the most sensitive stop searches. Due to the "double invisible" kinematics of the t~tν~ν\widetilde t\to t\widetilde\nu\nu process, and the low efficiency in tagging the tτ~τt\widetilde\tau\tau decay products, light stops are generically allowed. In the minimal supersymmetric standard model with \sim 100 GeV sneutrinos, stops with masses as small as \sim 350 GeV turn out to be allowed at 95% CL.

Keywords

Cite

@article{arxiv.1702.07359,
  title  = {A light sneutrino rescues the light stop},
  author = {Mikael Chala and Antonio Delgado and Germano Nardini and Mariano Quiros},
  journal= {arXiv preprint arXiv:1702.07359},
  year   = {2017}
}

Comments

25 pages

R2 v1 2026-06-22T18:26:50.314Z