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Relic density of dark matter in the inert doublet model beyond leading order for the low mass region: 2. Co-annihilation
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abstract
We examine the relic density of the light mass dark matter region in the inert doublet model (IDM) when the dominant process is due to co-annihilation between the lightest neutral scalars of the model. The full one-loop electroweak corrections are computed in an on-shell scheme and are found to be well approximated as an effective cross-section expressed in terms of $Z$-observables. The electroweak corrections to the subdominant process which consists of an annihilation into an on-shell $W$ and an off-shell $W$, that is calculated as a annihilation into a 3-body final state, is also performed. The latter reveals an important dependence on a parameter that describes the self-interaction of the new scalars (solely within the dark sector), a parameter which is not accessible in tree-level calculations of standard model (SM)-IDM interactions.
Forward citations
Cited by 2 Pith papers
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Full Next-To Leading-Order Electroweak and QCD Corrections to the Relic Density in the CxSM
NLO QCD and electroweak corrections to the CxSM dark-matter relic density are computed and released in the public code RelExt@NLO; the corrections shift the allowed parameter region in both directions.
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Probing the Inert Doublet Model via Vector-Boson Fusion at a Muon Collider
A 10 TeV muon collider could discover inert-doublet scalars produced via vector-boson fusion, reaching 5 sigma for selected benchmark points with machine-learning analysis, while 3 TeV lacks sensitivity.
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