BBN for the LHC: constraints on lifetimes of the Higgs portal scalars
arXiv:1706.01920 · doi:10.1103/PhysRevD.96.075033
Abstract
LHC experiments can provide a remarkable sensitivity to exotic metastable massive particles, decaying with significant displacement from the interaction point. The best sensitivity is achieved to models where the production and decay occur due to different coupling constants, and the lifetime of exotic particles determines the probability of decay within a detector. The lifetimes of such particles can be independently limited from standard cosmology, in particular the Big Bang Nucleosynthesis. In this paper, we analyze the constraints on the simplest scalar model coupled through the Higgs portal, where the production occurs via , and the decay is induced by the small mixing angle of the Higgs field and scalar . We find that throughout the most part of the parameter space, , the lifetimes of exotic particle has to be less than 0.1 seconds, while below it could grow to about a second. The strong constraints on lifetimes are induced by the nucleonic and mesonic decays of scalars that tend to raise the ratio. Strong constraints on lifetimes of the minimal singlet extensions of the Higgs potential is a welcome news for the MATHUSLA proposal that seeks to detect displaced decays of exotic particles produced in the LHC collisions. We also point out how more complicated exotic sectors could evade the BBN lifetime constraints.
16 pages, 11 figures
References in corpus (13)
- Secluded WIMP Dark Matter
- Gauge Singlet Scalars as Cold Dark Matter
- Precise Relic WIMP Abundance and its Impact on Searches for Dark Matter Annihilation
- Big Bang Nucleosynthesis Constraints on Hadronically and Electromagnetically Decaying Relic Neutral Particles
- Minimal Extension of the Standard Model Scalar Sector
- Big Bang Nucleosynthesis as a Probe of New Physics
- Multilepton and Lepton Jet Probes of Sub-Weak-Scale Right-Handed Neutrinos
- Search for long-lived particles that decay into final states containing two electrons or two muons in proton-proton collisions at sqrt(s) = 8 TeV
- Displaced Supersymmetry
- Metastable GeV-scale particles as a solution to the cosmological lithium problem
- Cosmological Constraints on Neutrino Injection
- Constraining Light Bosons with Radiative Decays
- Primordial beryllium as a big bang calorimeter
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