<p>We investigate a one loop radiative neutrino mass model, where the loop particles, notably a singlet fermion (<i>χ</i>), a doublet fermion (Ψ) and three generations of singlet scalars (<i>ϕ</i><sub><i>i</i></sub>, <i>i</i> = {1, 2, 3}) are assumed to be odd under an additional <InlineEquation ID="IEq1"> <EquationSource Format="MATHML"><math display="inline"> <msub> <mi mathvariant="script">Z</mi> <mn>2</mn> </msub> </math></EquationSource> <EquationSource Format="TEX">\( {\mathcal{Z}}_2 \)</EquationSource> </InlineEquation>-symmetry. In this setup, the singlet fermion mixes with the neutral component of the doublet to give rise singlet-doublet Majorana dark matter. The addition of <InlineEquation ID="IEq2"> <EquationSource Format="MATHML"><math display="inline"> <msub> <mi mathvariant="script">Z</mi> <mn>2</mn> </msub> </math></EquationSource> <EquationSource Format="TEX">\( {\mathcal{Z}}_2 \)</EquationSource> </InlineEquation> odd scalars in the model provides rich phenomenological implications. We find that the quartic interaction terms between the SM Higgs and <i>ϕ</i><sub><i>i</i></sub>s play a significant role in modifying the scalar potential to have a first-order phase transition (FOPT) leading to observable gravitational wave (GW) spectra. We also examine the non-trivial role played by the singlet-doublet fermion DM and the scalars in loop-induced neutrino mass, (<i>g</i> – 2)<sub><i>μ</i></sub>, and lepton flavor violation. We find that the model is predictive due to the combined constraints and can be verified at different terrestrial experiments.</p>

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Gravitational wave probe of singlet-doublet dark matter induced radiative neutrino mass

  • Ujjal Kumar Dey,
  • Santu Kumar Manna,
  • Partha Kumar Paul,
  • Sujit Kumar Sahoo,
  • Narendra Sahu

摘要

We investigate a one loop radiative neutrino mass model, where the loop particles, notably a singlet fermion (χ), a doublet fermion (Ψ) and three generations of singlet scalars (ϕi, i = {1, 2, 3}) are assumed to be odd under an additional Z 2 \( {\mathcal{Z}}_2 \) -symmetry. In this setup, the singlet fermion mixes with the neutral component of the doublet to give rise singlet-doublet Majorana dark matter. The addition of Z 2 \( {\mathcal{Z}}_2 \) odd scalars in the model provides rich phenomenological implications. We find that the quartic interaction terms between the SM Higgs and ϕis play a significant role in modifying the scalar potential to have a first-order phase transition (FOPT) leading to observable gravitational wave (GW) spectra. We also examine the non-trivial role played by the singlet-doublet fermion DM and the scalars in loop-induced neutrino mass, (g – 2)μ, and lepton flavor violation. We find that the model is predictive due to the combined constraints and can be verified at different terrestrial experiments.