activity
20182020
most citedDark Matter Abundance from Sequential Freeze-in Mechanism

33 citations · 33 across the 2 of their papers we have counts for

collaborators

6 papers

hep-ph202033 cited

Dark Matter Abundance from Sequential Freeze-in Mechanism

Genevieve Belanger, Cedric Delaunay, Alexander Pukhov +1

We present a thorough analysis of the sequential freeze-in mechanism for dark matter production in the early universe. In this mechanism the dark matter relic density results from…

hep-ph2019

Confronting minimal freeze-in models with the LHC

G. Bélanger, N. Desai, A. Goudelis +8

We present a class of dark matter models, in which the dark matter particle is a feebly interacting massive particle (FIMP) produced via the decay of an electrically charged and/or…

hep-ph2019

Probing Dark Matter freeze-in with long-lived particle signatures: MATHUSLA, HL-LHC and FCC-hh

Jose Miguel No, Patrick Tunney, Bryan Zaldivar

Collider searches for long-lived particles yield a promising avenue to probe the freeze-in production of Dark Matter via the decay of a parent particle. We analyze the prospects of…

hep-ph2018

LHC-friendly minimal freeze-in models

G. Bélanger, N. Desai, A. Goudelis +8

We propose simple freeze-in models where the observed dark matter abundance is explained via the decay of an electrically charged and/or coloured parent particle into Feebly Intera…

hep-ph2018

Long-Lived Particles at the Energy Frontier: The MATHUSLA Physics Case

David Curtin, Marco Drewes, Matthew McCullough +85

We examine the theoretical motivations for long-lived particle (LLP) signals at the LHC in a comprehensive survey of Standard Model (SM) extensions. LLPs are a common prediction of…

hep-ph2018

Les Houches 2017: Physics at TeV Colliders New Physics Working Group Report

G. Brooijmans, M. Dolan, S. Gori +80

We present the activities of the `New Physics' working group for the `Physics at TeV Colliders' workshop (Les Houches, France, 5--23 June, 2017). Our report includes new physics st…