publication . Preprint . 2019

Dark Matter Annihilation to Neutrinos

Argüelles, Carlos A.; Diaz, Alejandro; Kheirandish, Ali; Olivares-Del-Campo, Andrés; Safa, Ibrahim; Vincent, Aaron C.;
Open Access English
  • Published: 19 Dec 2019
Abstract
Comment: 30 pages, 8 figures. Significant updates, including methods section and results figures
Subjects
arXiv: High Energy Physics::PhenomenologyAstrophysics::High Energy Astrophysical Phenomena
free text keywords: High Energy Physics - Phenomenology, Astrophysics - High Energy Astrophysical Phenomena
Funded by
NSF| The EPP Supported Neutrino Program at MIT
Project
  • Funder: National Science Foundation (NSF)
  • Project Code: 1801996
  • Funding stream: Directorate for Mathematical & Physical Sciences | Division of Physics
Download from
141 references, page 1 of 10

[1] Fermi-LAT, DES: A. Albert et. al., Searching for Dark Matter Annihilation in Recently Discovered Milky Way Satellites with Fermi-LAT, Astrophys. J. 834 (2017) 110,

[4] C. Cappiello and J. F. Beacom, Strong New Limits on Light Dark Matter from Neutrino Experiments, Phys. Rev. D100 (2019) 103011, [arXiv:1906.11283].

[5] M. Blennow, E. Fernandez-Martinez, et. al., Neutrino Portals to Dark Matter, arXiv:1903.00006.

[6] C. Boehm, Y. Farzan, T. Hambye, S. Palomares-Ruiz, and S. Pascoli, Is it possible to explain neutrino masses with scalar dark matter?, Phys. Rev. D77 (2008) 043516, [hep-ph/0612228]. [OpenAIRE]

[7] Y. Farzan and E. Ma, Dirac neutrino mass generation from dark matter, Phys. Rev. D86 (2012) 033007, [arXiv:1204.4890].

[8] M. Escudero, N. Rius, and V. Sanz, Sterile neutrino portal to Dark Matter I: The U (1)B L case, JHEP 02 (2017) 045, [arXiv:1606.01258].

[9] M. Escudero, N. Rius, and V. Sanz, Sterile Neutrino portal to Dark Matter II: Exact Dark symmetry, Eur. Phys. J. C77 (2017) 397, [arXiv:1607.02373]. [OpenAIRE]

[10] C. Hagedorn, J. Herrero-Garc a, E. Molinaro, and M. A. Schmidt, Phenomenology of the Generalised Scotogenic Model with Fermionic Dark Matter, JHEP 11 (2018) 103, [arXiv:1804.04117]. [OpenAIRE]

[11] J. B. G. Alvey and M. Fairbairn, Linking Scalar Dark Matter and Neutrino Masses with IceCube 170922A, arXiv:1902.01450.

[12] H. H. Patel, S. Profumo, and B. Shakya, Loop Dominated Signals from Neutrino Portal Dark Matter, arXiv:1912.05581.

[13] S. Baumholzer, V. Brdar, P. Schwaller, and A. Segner, Shining Light on the Scotogenic Model: Interplay of Colliders, Cosmology and Astrophysics, arXiv:1912.08215.

[14] E. Bertuzzo, S. Jana, P. A. N. Machado, and R. Zukanovich Funchal, Dark Neutrino Portal to Explain MiniBooNE excess, Phys. Rev. Lett. 121 (2018) 241801, [arXiv:1807.09877]. [OpenAIRE]

[15] P. Ballett, S. Pascoli, and M. Ross-Lonergan, U(1)' mediated decays of heavy sterile neutrinos in MiniBooNE, Phys. Rev. D99 (2019) 071701, [arXiv:1808.02915].

[16] P. Ballett, M. Hostert, and S. Pascoli, Neutrino Masses from a Dark Neutrino Sector below the Electroweak Scale, Phys. Rev. D99 (2019) 091701, [arXiv:1903.07590]. [OpenAIRE]

[17] P. Ballett, M. Hostert, and S. Pascoli, Dark Neutrinos and a Three Portal Connection to the Standard Model, arXiv:1903.07589.

141 references, page 1 of 10
Abstract
Comment: 30 pages, 8 figures. Significant updates, including methods section and results figures
Subjects
arXiv: High Energy Physics::PhenomenologyAstrophysics::High Energy Astrophysical Phenomena
free text keywords: High Energy Physics - Phenomenology, Astrophysics - High Energy Astrophysical Phenomena
Funded by
NSF| The EPP Supported Neutrino Program at MIT
Project
  • Funder: National Science Foundation (NSF)
  • Project Code: 1801996
  • Funding stream: Directorate for Mathematical & Physical Sciences | Division of Physics
Download from
141 references, page 1 of 10

[1] Fermi-LAT, DES: A. Albert et. al., Searching for Dark Matter Annihilation in Recently Discovered Milky Way Satellites with Fermi-LAT, Astrophys. J. 834 (2017) 110,

[4] C. Cappiello and J. F. Beacom, Strong New Limits on Light Dark Matter from Neutrino Experiments, Phys. Rev. D100 (2019) 103011, [arXiv:1906.11283].

[5] M. Blennow, E. Fernandez-Martinez, et. al., Neutrino Portals to Dark Matter, arXiv:1903.00006.

[6] C. Boehm, Y. Farzan, T. Hambye, S. Palomares-Ruiz, and S. Pascoli, Is it possible to explain neutrino masses with scalar dark matter?, Phys. Rev. D77 (2008) 043516, [hep-ph/0612228]. [OpenAIRE]

[7] Y. Farzan and E. Ma, Dirac neutrino mass generation from dark matter, Phys. Rev. D86 (2012) 033007, [arXiv:1204.4890].

[8] M. Escudero, N. Rius, and V. Sanz, Sterile neutrino portal to Dark Matter I: The U (1)B L case, JHEP 02 (2017) 045, [arXiv:1606.01258].

[9] M. Escudero, N. Rius, and V. Sanz, Sterile Neutrino portal to Dark Matter II: Exact Dark symmetry, Eur. Phys. J. C77 (2017) 397, [arXiv:1607.02373]. [OpenAIRE]

[10] C. Hagedorn, J. Herrero-Garc a, E. Molinaro, and M. A. Schmidt, Phenomenology of the Generalised Scotogenic Model with Fermionic Dark Matter, JHEP 11 (2018) 103, [arXiv:1804.04117]. [OpenAIRE]

[11] J. B. G. Alvey and M. Fairbairn, Linking Scalar Dark Matter and Neutrino Masses with IceCube 170922A, arXiv:1902.01450.

[12] H. H. Patel, S. Profumo, and B. Shakya, Loop Dominated Signals from Neutrino Portal Dark Matter, arXiv:1912.05581.

[13] S. Baumholzer, V. Brdar, P. Schwaller, and A. Segner, Shining Light on the Scotogenic Model: Interplay of Colliders, Cosmology and Astrophysics, arXiv:1912.08215.

[14] E. Bertuzzo, S. Jana, P. A. N. Machado, and R. Zukanovich Funchal, Dark Neutrino Portal to Explain MiniBooNE excess, Phys. Rev. Lett. 121 (2018) 241801, [arXiv:1807.09877]. [OpenAIRE]

[15] P. Ballett, S. Pascoli, and M. Ross-Lonergan, U(1)' mediated decays of heavy sterile neutrinos in MiniBooNE, Phys. Rev. D99 (2019) 071701, [arXiv:1808.02915].

[16] P. Ballett, M. Hostert, and S. Pascoli, Neutrino Masses from a Dark Neutrino Sector below the Electroweak Scale, Phys. Rev. D99 (2019) 091701, [arXiv:1903.07590]. [OpenAIRE]

[17] P. Ballett, M. Hostert, and S. Pascoli, Dark Neutrinos and a Three Portal Connection to the Standard Model, arXiv:1903.07589.

141 references, page 1 of 10
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