We study scenarios where Dark Matter is a weakly interacting particle (WIMP) embedded in an ElectroWeak multiplet. In particular, we consider real SU(2) representations with zero hypercharge, that automatically avoid direct detection constraints from tree-level Z-exchange. We compute for the first time all the calculable thermal masses for scalar and fermionic WIMPs, including Sommerfeld enhancement and bound states formation at leading order in gauge boson exchange and emission. WIMP masses of few hundred TeV are shown to be compatible both with s-wave unitarity of the annihilation cross-section, and perturbativity. We also provide theory uncertainties on the masses for all multiplets, which are shown to be significant for large SU(2) mult...
Abstract Dark Matter is a necessary ingredient for a complete theory of Nature, which has so far rem...
AbstractIf the dark matter of the Universe is constituted by weakly interacting massive particles (W...
Thermal freeze-out of a weakly interacting massive particle is the dominant paradigm for dark matter...
We study scenarios where Dark Matter is a weakly interacting particle (WIMP) embedded in an ElectroW...
We continue the study of weakly interacting massive particles (WIMP) started in Bottaro et al. (Eur ...
We continue the study of weakly interacting massive particles (WIMP) started in [arXiv:2107.09688], ...
Weakly interacting massive particles (WIMPs) have long reigned as one of the leading classes of dark...
We discuss the extent to which models of Weakly Interacting Massive Particle (WIMP) Dark Matter (DM)...
An electroweak multiplet stable due to a new global symmetry is a simple and well-motivated candidat...
Astrophysical observations indicate that about 23% of the energy density of the universe is in the f...
AbstractWe consider a generic mechanism via which thermal relic WIMP dark matter may be decoupled fr...
The non-observation of new physics at the LHC and in direct detection experiments puts significant p...
The search for weakly-interacting massive particle (WIMP) dark matter is multi-pronged. Ulti- mately...
Weakly Interacting Massive Particles (WIMPs) are among the best-motivated dark matter candidates. In...
if the dark matter of the Universe is constituted by weakly interacting massive particles (WIMP), th...
Abstract Dark Matter is a necessary ingredient for a complete theory of Nature, which has so far rem...
AbstractIf the dark matter of the Universe is constituted by weakly interacting massive particles (W...
Thermal freeze-out of a weakly interacting massive particle is the dominant paradigm for dark matter...
We study scenarios where Dark Matter is a weakly interacting particle (WIMP) embedded in an ElectroW...
We continue the study of weakly interacting massive particles (WIMP) started in Bottaro et al. (Eur ...
We continue the study of weakly interacting massive particles (WIMP) started in [arXiv:2107.09688], ...
Weakly interacting massive particles (WIMPs) have long reigned as one of the leading classes of dark...
We discuss the extent to which models of Weakly Interacting Massive Particle (WIMP) Dark Matter (DM)...
An electroweak multiplet stable due to a new global symmetry is a simple and well-motivated candidat...
Astrophysical observations indicate that about 23% of the energy density of the universe is in the f...
AbstractWe consider a generic mechanism via which thermal relic WIMP dark matter may be decoupled fr...
The non-observation of new physics at the LHC and in direct detection experiments puts significant p...
The search for weakly-interacting massive particle (WIMP) dark matter is multi-pronged. Ulti- mately...
Weakly Interacting Massive Particles (WIMPs) are among the best-motivated dark matter candidates. In...
if the dark matter of the Universe is constituted by weakly interacting massive particles (WIMP), th...
Abstract Dark Matter is a necessary ingredient for a complete theory of Nature, which has so far rem...
AbstractIf the dark matter of the Universe is constituted by weakly interacting massive particles (W...
Thermal freeze-out of a weakly interacting massive particle is the dominant paradigm for dark matter...