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arXiv:1704.01107·v2·High Energy Physics — Phenomenology

Singlet scalar Dark matter in models without right-handed neutrinos

Shivaramakrishna Singirala🇮🇳 · Rukmani Mohanta🇮🇳 · Sudhanwa Patra🇮🇳

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Abstract

We investigate the phenomenology of singlet scalar dark matter in a simple gauge extension of the Standard Model where the dark matter particle is charged under the symmetry. The non-trivial gauge anomalies are cancelled with the introduction of three exotic fermions with charges as , instead of right-handed neutrinos with in conventional model. Without the need of any ad-hoc discrete symmetry, the charge plays a crucial role in stabilizing the dark matter. We make a comprehensive study of dark matter phenomenology in the scalar and gauge portals separately. In the gauge-mediated regime, we invoke the LEP-II constraints and dilepton limits of ATLAS on the gauge parameters. A massless physical Goldstone plays a vital role in the scalar-portal dark matter observables, becomes a unique feature of the model. We show the mechanism of generating the light neutrino mass at one-loop level where the dark matter singlet runs in the loop. We shed light on the semi-annihilation and finally, we comment on indirect signals in this framework.

Comments: 26 pages, 11 figures, version to appear in EPJP

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