Diagnostic potential of cosmic-neutrino absorption spectroscopy

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Annihilation of extremely energetic cosmic neutrinos on the relic-neutrino background can give rise to absorption lines at energies corresponding to formation of the electroweak gauge boson Z{sup 0}. The positions of the absorption dips are set by the masses of the relic neutrinos. Suitably intense sources of extremely energetic (10{sup 21} - 10{sup 25}-eV) cosmic neutrinos might therefore enable the determination of the absolute neutrino masses and the flavor composition of the mass eigenstates. Several factors--other than neutrino mass and composition--distort the absorption lines, however. We analyze the influence of the time-evolution of the relic-neutrino density and the consequences of … continued below

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25 pages

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Barenboim, Gabriela; U., /Valencia; Mena Requejo, Olga; Quigg, Chris & /Fermilab December 1, 2004.

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Annihilation of extremely energetic cosmic neutrinos on the relic-neutrino background can give rise to absorption lines at energies corresponding to formation of the electroweak gauge boson Z{sup 0}. The positions of the absorption dips are set by the masses of the relic neutrinos. Suitably intense sources of extremely energetic (10{sup 21} - 10{sup 25}-eV) cosmic neutrinos might therefore enable the determination of the absolute neutrino masses and the flavor composition of the mass eigenstates. Several factors--other than neutrino mass and composition--distort the absorption lines, however. We analyze the influence of the time-evolution of the relic-neutrino density and the consequences of neutrino decay. We consider the sensitivity of the lineshape to the age and character of extremely energetic neutrino sources, and to the thermal history of the Universe, reflected in the expansion rate. We take into account Fermi motion arising from the thermal distribution of the relic-neutrino gas. We also note the implications of Dirac vs. Majorana relics, and briefly consider unconventional neutrino histories. We ask what kinds of external information would enhance the potential of cosmic-neutrino absorption spectroscopy, and estimate the sensitivity required to make the technique a reality.

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25 pages

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  • Journal Name: Phys.Rev.D71:083002,2005

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  • Report No.: FERMILAB-PUB-04-379-T
  • Grant Number: AC02-76CH03000
  • Office of Scientific & Technical Information Report Number: 15011763
  • Archival Resource Key: ark:/67531/metadc1410887

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Office of Scientific & Technical Information Technical Reports

Reports, articles and other documents harvested from the Office of Scientific and Technical Information.

Office of Scientific and Technical Information (OSTI) is the Department of Energy (DOE) office that collects, preserves, and disseminates DOE-sponsored research and development (R&D) results that are the outcomes of R&D projects or other funded activities at DOE labs and facilities nationwide and grantees at universities and other institutions.

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  • December 1, 2004

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  • Jan. 23, 2019, 12:54 p.m.

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  • Feb. 7, 2019, 3:08 p.m.

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Barenboim, Gabriela; U., /Valencia; Mena Requejo, Olga; Quigg, Chris & /Fermilab. Diagnostic potential of cosmic-neutrino absorption spectroscopy, article, December 1, 2004; Batavia, Illinois. (https://digital.library.unt.edu/ark:/67531/metadc1410887/: accessed May 14, 2024), University of North Texas Libraries, UNT Digital Library, https://digital.library.unt.edu; crediting UNT Libraries Government Documents Department.

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