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Neutrinos are the Standard Model (SM) particles which we understand the least, often due to how weakly they interact with the other SM particles.
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Y. Farzan and S. Palomares-Ruiz, “Dips in the Diffuse Supernova Neutrino Background”, JCAP 06
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S. Dodelson, Modern Cosmology , Academic Press. Academic Press, 2003
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2014
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K. Ioka and K. Murase, “IceCube PeV–EeV neutrinos and secret interactions of neutrinos”, PTEP 2014
2014
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2015
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2015
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A. DiFranzo and D. Hooper, “Searching for MeV-Scale Gauge Bosons with IceCube”, Phys. Rev. D 92
2015
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2016
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D. Baumann, D. Green, J. Meyers and B. Wallisch, “Phases of New Physics in the CMB”, JCAP 01
2016
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J. L. Bernal, L. Verde and A. G. Riess, “The trouble with H 0 H_{0} ”, JCAP 10
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P. S. Pasquini and O. L. G. Peres, “Bounds on Neutrino-Scalar Yukawa Coupling”, Phys. Rev. D 93
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C. Garcia-Cely and J. Heeck, “Neutrino Lines from Majoron Dark Matter”, JHEP 05
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D. Baumann, D. Green and M. Zaldarriaga, “Phases of New Physics in the BAO Spectrum”, JCAP 11
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Y. Farzan and M. Tortola, “Neutrino oscillations and Non-Standard Interactions”, Front. in Phys. 6
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M. Bauer, P. Foldenauer and J. Jaeckel, “Hunting All the Hidden Photons”, JHEP 07
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K. J. Kelly and P. A. Machado, “Multimessenger Astronomy and New Neutrino Physics”, JCAP 10
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2019
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A. Berlin and N. Blinov, “Thermal neutrino portal to sub-MeV dark matter”, Phys. Rev. D 99
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2020
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2021
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W. L. Freedman, “Measurements of the Hubble Constant: Tensions in Perspective”, Astrophys. J. 919
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