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The Higgs Portal Above Threshold

2 Pith papers cite this work. Polarity classification is still indexing.

2 Pith papers citing it
abstract

The discovery of the Higgs boson opens the door to new physics interacting via the Higgs Portal, including motivated scenarios relating to baryogenesis, dark matter, and electroweak naturalness. We systematically explore the collider signatures of singlet scalars produced via the Higgs Portal at the 14 TeV LHC and a prospective 100 TeV hadron collider. We focus on the challenging regime where the scalars are too heavy to be produced in the decays of an on-shell Higgs boson, and instead are produced primarily via an off-shell Higgs. Assuming these scalars escape the detector, promising channels include missing energy in association with vector boson fusion, monojets, and top pairs. We forecast the sensitivity of searches in these channels at $\sqrt{s} = 14$ & 100 TeV and compare collider reach to the motivated parameter space of singlet-assisted electroweak baryogenesis, Higgs Portal dark matter, and neutral naturalness.

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citation-polarity summary

years

2024 1 2019 1

verdicts

UNVERDICTED 2

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representative citing papers

Why detect forward muons at a muon collider

hep-ph · 2024-10-31 · unverdicted · novelty 4.0

Forward muon detection at muon colliders enables Higgs property measurements, invisible new physics searches via Higgs portal, and characterization of vector boson scattering through angular correlations.

citing papers explorer

Showing 2 of 2 citing papers.

  • Why detect forward muons at a muon collider hep-ph · 2024-10-31 · unverdicted · none · ref 30 · internal anchor

    Forward muon detection at muon colliders enables Higgs property measurements, invisible new physics searches via Higgs portal, and characterization of vector boson scattering through angular correlations.

  • Detecting gravitational waves from cosmological phase transitions with LISA: an update astro-ph.CO · 2019-10-29 · unverdicted · none · ref 71 · internal anchor

    Updated LISA detection prospects for gravitational waves from phase transitions are derived from state-of-the-art sound-wave simulations, with a new web tool PTPlot provided for parameter scans.