Flavor ratios of extragalactic neutrinos and neutrino shortcuts in extra dimensions

作者: Elke Aeikens , Heinrich Päs , Sandip Pakvasa , Philipp Sicking

DOI: 10.1088/1475-7516/2015/10/005

关键词:

摘要: The recent measurement of high energy extragalactic neutrinos by the IceCube Collaboration has opened a new window to probe non-standard neutrino properties. Among other effects, sterile altered dispersion relations (ADRs) due shortcuts in an extra dimension can significantly affect astrophysical flavor ratios. We discuss two limiting cases this effect, first active-sterile oscillations with constant ADR potential and second MSW-like resonant conversion arising from geodesics oscillating around brane asymmetrically warped dimension. demonstrate that case suppress flux specific flavors such as νμ or ντ at energies.

参考文章(38)
John G Learned, Sandip Pakvasa, Detecting Tau Neutrino Oscillations at PeV Energies Astroparticle Physics. ,vol. 3, pp. 267- 274 ,(1995) , 10.1016/0927-6505(94)00043-3
Dharam Vir Ahluwalia, G.Z. Adunas, C.A. Ortiz, Robust flavor equalization of cosmic neutrino flux by quasi bimaximal mixing arXiv: High Energy Physics - Phenomenology. ,(2000)
Sebastian Hollenberg, Heinrich Päs, Resonant active-sterile neutrino mixing in the presence of matter potentials and altered dispersion relations arXiv: High Energy Physics - Phenomenology. ,(2009)
John F. Beacom, Nicole F. Bell, Dan Hooper, Sandip Pakvasa, Thomas J. Weiler, Sensitivity to θ 13 and δ in the decaying astrophysical neutrino scenario Physical Review D. ,vol. 69, pp. 017303- ,(2004) , 10.1103/PHYSREVD.69.017303
A. Palladino, G. Pagliaroli, F. L. Villante, F. Vissani, What is the Flavor of the Cosmic Neutrinos Seen by IceCube Physical Review Letters. ,vol. 114, pp. 171101- 171101 ,(2015) , 10.1103/PHYSREVLETT.114.171101
James Dent, Heinrich Päs, Thomas J. Weiler, Sandip Pakvasa, Neutrino time travel arXiv: High Energy Physics - Phenomenology. ,(2007)
Sergio Palomares-Ruiz, Aaron C. Vincent, Olga Mena, Spectral analysis of the high-energy IceCube neutrinos Physical Review D. ,vol. 91, pp. 103008- ,(2015) , 10.1103/PHYSREVD.91.103008
Leonard S. Kisslinger, Sterile Plus Active Neutrinos and Neutrino Oscillations International Journal of Theoretical Physics. ,vol. 53, pp. 3201- 3207 ,(2014) , 10.1007/S10773-014-2117-6
Mark G Aartsen, M Ackermann, J Adams, JA Aguilar, M Ahlers, M Ahrens, D Altmann, T Anderson, C Arguelles, TC Arlen, J Auffenberg, X Bai, SW Barwick, V Baum, JJ Beatty, J Becker Tjus, K-H Becker, S BenZvi, P Berghaus, D Berley, E Bernardini, A Bernhard, DZ Besson, G Binder, D Bindig, M Bissok, E Blaufuss, J Blumenthal, David J Boersma, Christian Bohm, D Bose, S Böser, Olga Botner, L Brayeur, H-P Bretz, AM Brown, J Casey, M Casier, D Chirkin, A Christov, B Christy, K Clark, L Classen, F Clevermann, S Coenders, DF Cowen, AH Cruz Silva, Matthias Danninger, J Daughhetee, JC Davis, M Day, JPAM De Andre, C De Clercq, Sam De Ridder, P Desiati, KD De Vries, M de With, T DeYoung, JC Díaz-Vélez, M Dunkman, R Eagan, B Eberhardt, B Eichmann, J Eisch, S Euler, PA Evenson, O Fadiran, AR Fazely, A Fedynitch, J Feintzeig, J Felde, T Feusels, K Filimonov, C Finley, T Fischer-Wasels, S Flis, A Franckowiak, K Frantzen, T Fuchs, TK Gaisser, J Gallagher, L Gerhardt, D Gier, L Gladstone, T Glüsenkamp, A Goldschmidt, G Golup, JG Gonzalez, JA Goodman, D Góra, DT Grandmont, D Grant, P Gretskov, JC Groh, A Groß, C Ha, C Haack, A Haj Ismail, P Hallen, A Hallgren, F Halzen, K Hanson, D Hebecker, D Heereman, D Heinen, K Helbing, R Hellauer, D Hellwig, S Hickford, GC Hill, KD Hoffman, R Hoffmann, A Homeier, K Hoshina, F Huang, W Huelsnitz, PO Hulth, K Hultqvist, S Hussain, A Ishihara, E Jacobi, J Jacobsen, K Jagielski, GS Japaridze, K Jero, O Jlelati, M Jurkovic, B Kaminsky, A Kappes, T Karg, A Karle, M Kauer, JL Kelley, A Kheirandish, J Kiryluk, J Kläs, SR Klein, J-H Köhne, G Kohnen, H Kolanoski, A Koob, L Köpke, C Kopper, S Kopper, DJ Koskinen, M Kowalski, A Kriesten, K Krings, G Kroll, J Kunnen, None, Observation of high-energy astrophysical neutrinos in three years of icecube data Physical Review Letters. ,vol. 113, pp. 101101- 101101 ,(2014) , 10.1103/PHYSREVLETT.113.101101