Neutrino oscillation studies with IceCube-DeepCore

M. G. Aartsen, K. Abraham, M. Ackermann, J. Adams, J. A. Aguilar, M. Ahlers, M. Ahrens, D. Altmann, Tyler Brooks Anderson, I. Ansseau, M. Archinger, C. Arguelles, T. C. Arlen, J. Auffenberg, X. Bai, S. W. Barwick, V. Baum, R. Bay, J. J. Beatty, J. Becker TjusK. H. Becker, E. Beiser, P. Berghaus, D. Berley, E. Bernardini, A. Bernhard, D. Z. Besson, G. Binder, D. Bindig, M. Bissok, E. Blaufuss, J. Blumenthal, D. J. Boersma, C. Bohm, M. Börner, F. Bos, D. Bose, S. Böser, O. Botner, J. Braun, L. Brayeur, H. P. Bretz, N. Buzinsky, J. Casey, M. Casier, E. Cheung, D. Chirkin, A. Christov, K. Clark, L. Classen, S. Coenders, G. H. Collin, J. M. Conrad, Douglas Cowen, A. H. Cruz Silva, J. Daughhetee, J. C. Davis, M. Day, J. P.A.M. de André, C. De Clercq, E. del Pino Rosendo, H. Dembinski, S. De Ridder, P. Desiati, K. D. de Vries, G. de Wasseige, M. de With, T. DeYoung, J. C. Díaz-Vélez, V. di Lorenzo, J. P. Dumm, M. Dunkman, B. Eberhardt, T. Ehrhardt, B. Eichmann, S. Euler, P. A. Evenson, S. Fahey, A. R. Fazely, J. Feintzeig, J. Felde, K. Filimonov, C. Finley, S. Flis, C. C. Fösig, T. Fuchs, T. K. Gaisser, R. Gaior, J. Gallagher, L. Gerhardt, K. Ghorbani, D. Gier, L. Gladstone, M. Glagla, T. Glüsenkamp, A. Goldschmidt, G. Golup, J. G. Gonzalez, D. Góra, D. Grant, Z. Griffith, A. Groß, C. Ha, C. Haack, A. Haj Ismail, A. Hallgren, F. Halzen, E. Hansen, B. Hansmann, K. Hanson, D. Hebecker, D. Heereman, K. Helbing, R. Hellauer, S. Hickford, J. Hignight, G. C. Hill, K. D. Hoffman, R. Hoffmann, K. Holzapfel, A. Homeier, K. Hoshina, F. Huang, M. Huber, W. Huelsnitz, P. O. Hulth, K. Hultqvist, S. In, A. Ishihara, E. Jacobi, G. S. Japaridze, M. Jeong, K. Jero, B. J.P. Jones, M. Jurkovic, A. Kappes, T. Karg, A. Karle, M. Kauer, A. Keivani, J. L. Kelley, J. Kemp, A. Kheirandish, J. Kiryluk, S. R. Klein, G. Kohnen, R. Koirala, H. Kolanoski, R. Konietz, L. Köpke, C. Kopper, S. Kopper, D. J. Koskinen, M. Kowalski, K. Krings, G. Kroll, M. Kroll, G. Krückl, J. Kunnen, N. Kurahashi, T. Kuwabara, M. Labare, J. L. Lanfranchi, M. J. Larson, M. Lesiak-Bzdak, M. Leuermann, J. Leuner, L. Lu, J. Lünemann, J. Madsen, G. Maggi, K. B.M. Mahn, M. Mandelartz, R. Maruyama, K. Mase, H. S. Matis, R. Maunu, F. McNally, K. Meagher, M. Medici, A. Meli, T. Menne, G. Merino, T. Meures, S. Miarecki, E. Middell, L. Mohrmann, T. Montaruli, R. Morse, R. Nahnhauer, U. Naumann, G. Neer, H. Niederhausen, S. C. Nowicki, D. R. Nygren, A. Obertacke Pollmann, A. Olivas, A. Omairat, A. O'Murchadha, T. Palczewski, H. Pandya, D. V. Pankova, L. Paul, J. A. Pepper, C. Pérez de los Heros, C. Pfendner, D. Pieloth, E. Pinat, J. Posselt, P. B. Price, G. T. Przybylski, M. Quinnan, C. Raab, L. Rädel, M. Rameez, K. Rawlins, R. Reimann, M. Relich, E. Resconi, W. Rhode, M. Richman, S. Richter, B. Riedel, S. Robertson, M. Rongen, C. Rott, T. Ruhe, D. Ryckbosch, L. Sabbatini, H. G. Sander, A. Sandrock, J. Sandroos, S. Sarkar, K. Schatto, M. Schimp, T. Schmidt, S. Schoenen, S. Schöneberg, A. Schönwald, L. Schulte, L. Schumacher, D. Seckel, S. Seunarine, D. Soldin, M. Song, G. M. Spiczak, C. Spiering, M. Stahlberg, M. Stamatikos, T. Stanev, A. Stasik, A. Steuer, T. Stezelberger, R. G. Stokstad, A. Stößl, R. Ström, N. L. Strotjohann, G. W. Sullivan, M. Sutherland, H. Taavola, I. Taboada, J. Tatar, S. Ter-Antonyan, A. Terliuk, G. Tešić, S. Tilav, P. A. Toale, M. N. Tobin, S. Toscano, D. Tosi, M. Tselengidou, A. Turcati, E. Unger, M. Usner, S. Vallecorsa, J. Vandenbroucke, N. van Eijndhoven, S. Vanheule, J. van Santen, J. Veenkamp, M. Vehring, M. Voge, M. Vraeghe, C. Walck, A. Wallace, M. Wallraff, N. Wandkowsky, Ch Weaver, C. Wendt, S. Westerhoff, B. J. Whelan, K. Wiebe, C. H. Wiebusch, L. Wille, D. R. Williams, L. Wills, H. Wissing, M. Wolf, T. R. Wood, K. Woschnagg, D. L. Xu, X. W. Xu, Y. Xu, J. P. Yanez, G. Yodh, S. Yoshida, M. Zoll

Research output: Contribution to journalArticle

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Abstract

IceCube, a gigaton-scale neutrino detector located at the South Pole, was primarily designed to search for astrophysical neutrinos with energies of PeV and higher. This goal has been achieved with the detection of the highest energy neutrinos to date. At the other end of the energy spectrum, the DeepCore extension lowers the energy threshold of the detector to approximately 10 GeV and opens the door for oscillation studies using atmospheric neutrinos. An analysis of the disappearance of these neutrinos has been completed, with the results produced being complementary with dedicated oscillation experiments. Following a review of the detector principle and performance, the method used to make these calculations, as well as the results, is detailed. Finally, the future prospects of IceCube-DeepCore and the next generation of neutrino experiments at the South Pole (IceCube-Gen2, specifically the PINGU sub-detector) are briefly discussed.

Original languageEnglish (US)
Pages (from-to)161-177
Number of pages17
JournalNuclear Physics B
Volume908
DOIs
StatePublished - Jan 31 2016

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neutrinos
oscillations
detectors
poles
energy
astrophysics
energy spectra
thresholds

All Science Journal Classification (ASJC) codes

  • Nuclear and High Energy Physics

Cite this

Aartsen, M. G., Abraham, K., Ackermann, M., Adams, J., Aguilar, J. A., Ahlers, M., ... Zoll, M. (2016). Neutrino oscillation studies with IceCube-DeepCore. Nuclear Physics B, 908, 161-177. https://doi.org/10.1016/j.nuclphysb.2016.03.028
Aartsen, M. G. ; Abraham, K. ; Ackermann, M. ; Adams, J. ; Aguilar, J. A. ; Ahlers, M. ; Ahrens, M. ; Altmann, D. ; Anderson, Tyler Brooks ; Ansseau, I. ; Archinger, M. ; Arguelles, C. ; Arlen, T. C. ; Auffenberg, J. ; Bai, X. ; Barwick, S. W. ; Baum, V. ; Bay, R. ; Beatty, J. J. ; Becker Tjus, J. ; Becker, K. H. ; Beiser, E. ; Berghaus, P. ; Berley, D. ; Bernardini, E. ; Bernhard, A. ; Besson, D. Z. ; Binder, G. ; Bindig, D. ; Bissok, M. ; Blaufuss, E. ; Blumenthal, J. ; Boersma, D. J. ; Bohm, C. ; Börner, M. ; Bos, F. ; Bose, D. ; Böser, S. ; Botner, O. ; Braun, J. ; Brayeur, L. ; Bretz, H. P. ; Buzinsky, N. ; Casey, J. ; Casier, M. ; Cheung, E. ; Chirkin, D. ; Christov, A. ; Clark, K. ; Classen, L. ; Coenders, S. ; Collin, G. H. ; Conrad, J. M. ; Cowen, Douglas ; Cruz Silva, A. H. ; Daughhetee, J. ; Davis, J. C. ; Day, M. ; de André, J. P.A.M. ; De Clercq, C. ; del Pino Rosendo, E. ; Dembinski, H. ; De Ridder, S. ; Desiati, P. ; de Vries, K. D. ; de Wasseige, G. ; de With, M. ; DeYoung, T. ; Díaz-Vélez, J. C. ; di Lorenzo, V. ; Dumm, J. P. ; Dunkman, M. ; Eberhardt, B. ; Ehrhardt, T. ; Eichmann, B. ; Euler, S. ; Evenson, P. A. ; Fahey, S. ; Fazely, A. R. ; Feintzeig, J. ; Felde, J. ; Filimonov, K. ; Finley, C. ; Flis, S. ; Fösig, C. C. ; Fuchs, T. ; Gaisser, T. K. ; Gaior, R. ; Gallagher, J. ; Gerhardt, L. ; Ghorbani, K. ; Gier, D. ; Gladstone, L. ; Glagla, M. ; Glüsenkamp, T. ; Goldschmidt, A. ; Golup, G. ; Gonzalez, J. G. ; Góra, D. ; Grant, D. ; Griffith, Z. ; Groß, A. ; Ha, C. ; Haack, C. ; Haj Ismail, A. ; Hallgren, A. ; Halzen, F. ; Hansen, E. ; Hansmann, B. ; Hanson, K. ; Hebecker, D. ; Heereman, D. ; Helbing, K. ; Hellauer, R. ; Hickford, S. ; Hignight, J. ; Hill, G. C. ; Hoffman, K. D. ; Hoffmann, R. ; Holzapfel, K. ; Homeier, A. ; Hoshina, K. ; Huang, F. ; Huber, M. ; Huelsnitz, W. ; Hulth, P. O. ; Hultqvist, K. ; In, S. ; Ishihara, A. ; Jacobi, E. ; Japaridze, G. S. ; Jeong, M. ; Jero, K. ; Jones, B. J.P. ; Jurkovic, M. ; Kappes, A. ; Karg, T. ; Karle, A. ; Kauer, M. ; Keivani, A. ; Kelley, J. L. ; Kemp, J. ; Kheirandish, A. ; Kiryluk, J. ; Klein, S. R. ; Kohnen, G. ; Koirala, R. ; Kolanoski, H. ; Konietz, R. ; Köpke, L. ; Kopper, C. ; Kopper, S. ; Koskinen, D. J. ; Kowalski, M. ; Krings, K. ; Kroll, G. ; Kroll, M. ; Krückl, G. ; Kunnen, J. ; Kurahashi, N. ; Kuwabara, T. ; Labare, M. ; Lanfranchi, J. L. ; Larson, M. J. ; Lesiak-Bzdak, M. ; Leuermann, M. ; Leuner, J. ; Lu, L. ; Lünemann, J. ; Madsen, J. ; Maggi, G. ; Mahn, K. B.M. ; Mandelartz, M. ; Maruyama, R. ; Mase, K. ; Matis, H. S. ; Maunu, R. ; McNally, F. ; Meagher, K. ; Medici, M. ; Meli, A. ; Menne, T. ; Merino, G. ; Meures, T. ; Miarecki, S. ; Middell, E. ; Mohrmann, L. ; Montaruli, T. ; Morse, R. ; Nahnhauer, R. ; Naumann, U. ; Neer, G. ; Niederhausen, H. ; Nowicki, S. C. ; Nygren, D. R. ; Obertacke Pollmann, A. ; Olivas, A. ; Omairat, A. ; O'Murchadha, A. ; Palczewski, T. ; Pandya, H. ; Pankova, D. V. ; Paul, L. ; Pepper, J. A. ; Pérez de los Heros, C. ; Pfendner, C. ; Pieloth, D. ; Pinat, E. ; Posselt, J. ; Price, P. B. ; Przybylski, G. T. ; Quinnan, M. ; Raab, C. ; Rädel, L. ; Rameez, M. ; Rawlins, K. ; Reimann, R. ; Relich, M. ; Resconi, E. ; Rhode, W. ; Richman, M. ; Richter, S. ; Riedel, B. ; Robertson, S. ; Rongen, M. ; Rott, C. ; Ruhe, T. ; Ryckbosch, D. ; Sabbatini, L. ; Sander, H. G. ; Sandrock, A. ; Sandroos, J. ; Sarkar, S. ; Schatto, K. ; Schimp, M. ; Schmidt, T. ; Schoenen, S. ; Schöneberg, S. ; Schönwald, A. ; Schulte, L. ; Schumacher, L. ; Seckel, D. ; Seunarine, S. ; Soldin, D. ; Song, M. ; Spiczak, G. M. ; Spiering, C. ; Stahlberg, M. ; Stamatikos, M. ; Stanev, T. ; Stasik, A. ; Steuer, A. ; Stezelberger, T. ; Stokstad, R. G. ; Stößl, A. ; Ström, R. ; Strotjohann, N. L. ; Sullivan, G. W. ; Sutherland, M. ; Taavola, H. ; Taboada, I. ; Tatar, J. ; Ter-Antonyan, S. ; Terliuk, A. ; Tešić, G. ; Tilav, S. ; Toale, P. A. ; Tobin, M. N. ; Toscano, S. ; Tosi, D. ; Tselengidou, M. ; Turcati, A. ; Unger, E. ; Usner, M. ; Vallecorsa, S. ; Vandenbroucke, J. ; van Eijndhoven, N. ; Vanheule, S. ; van Santen, J. ; Veenkamp, J. ; Vehring, M. ; Voge, M. ; Vraeghe, M. ; Walck, C. ; Wallace, A. ; Wallraff, M. ; Wandkowsky, N. ; Weaver, Ch ; Wendt, C. ; Westerhoff, S. ; Whelan, B. J. ; Wiebe, K. ; Wiebusch, C. H. ; Wille, L. ; Williams, D. R. ; Wills, L. ; Wissing, H. ; Wolf, M. ; Wood, T. R. ; Woschnagg, K. ; Xu, D. L. ; Xu, X. W. ; Xu, Y. ; Yanez, J. P. ; Yodh, G. ; Yoshida, S. ; Zoll, M. / Neutrino oscillation studies with IceCube-DeepCore. In: Nuclear Physics B. 2016 ; Vol. 908. pp. 161-177.
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abstract = "IceCube, a gigaton-scale neutrino detector located at the South Pole, was primarily designed to search for astrophysical neutrinos with energies of PeV and higher. This goal has been achieved with the detection of the highest energy neutrinos to date. At the other end of the energy spectrum, the DeepCore extension lowers the energy threshold of the detector to approximately 10 GeV and opens the door for oscillation studies using atmospheric neutrinos. An analysis of the disappearance of these neutrinos has been completed, with the results produced being complementary with dedicated oscillation experiments. Following a review of the detector principle and performance, the method used to make these calculations, as well as the results, is detailed. Finally, the future prospects of IceCube-DeepCore and the next generation of neutrino experiments at the South Pole (IceCube-Gen2, specifically the PINGU sub-detector) are briefly discussed.",
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Schumacher and D. Seckel and S. Seunarine and D. Soldin and M. Song and Spiczak, {G. M.} and C. Spiering and M. Stahlberg and M. Stamatikos and T. Stanev and A. Stasik and A. Steuer and T. Stezelberger and Stokstad, {R. G.} and A. St{\"o}{\ss}l and R. Str{\"o}m and Strotjohann, {N. L.} and Sullivan, {G. W.} and M. Sutherland and H. Taavola and I. Taboada and J. Tatar and S. Ter-Antonyan and A. Terliuk and G. Tešić and S. Tilav and Toale, {P. A.} and Tobin, {M. N.} and S. Toscano and D. Tosi and M. Tselengidou and A. Turcati and E. Unger and M. Usner and S. Vallecorsa and J. Vandenbroucke and {van Eijndhoven}, N. and S. Vanheule and {van Santen}, J. and J. Veenkamp and M. Vehring and M. Voge and M. Vraeghe and C. Walck and A. Wallace and M. Wallraff and N. Wandkowsky and Ch Weaver and C. Wendt and S. Westerhoff and Whelan, {B. J.} and K. Wiebe and Wiebusch, {C. H.} and L. Wille and Williams, {D. R.} and L. Wills and H. Wissing and M. Wolf and Wood, {T. R.} and K. Woschnagg and Xu, {D. L.} and Xu, {X. W.} and Y. Xu and Yanez, {J. P.} and G. Yodh and S. Yoshida and M. Zoll",
year = "2016",
month = "1",
day = "31",
doi = "10.1016/j.nuclphysb.2016.03.028",
language = "English (US)",
volume = "908",
pages = "161--177",
journal = "Nuclear Physics B",
issn = "0550-3213",
publisher = "Elsevier",

}

Aartsen, MG, Abraham, K, Ackermann, M, Adams, J, Aguilar, JA, Ahlers, M, Ahrens, M, Altmann, D, Anderson, TB, Ansseau, I, Archinger, M, Arguelles, C, Arlen, TC, Auffenberg, J, Bai, X, Barwick, SW, Baum, V, Bay, R, Beatty, JJ, Becker Tjus, J, Becker, KH, Beiser, E, Berghaus, P, Berley, D, Bernardini, E, Bernhard, A, Besson, DZ, Binder, G, Bindig, D, Bissok, M, Blaufuss, E, Blumenthal, J, Boersma, DJ, Bohm, C, Börner, M, Bos, F, Bose, D, Böser, S, Botner, O, Braun, J, Brayeur, L, Bretz, HP, Buzinsky, N, Casey, J, Casier, M, Cheung, E, Chirkin, D, Christov, A, Clark, K, Classen, L, Coenders, S, Collin, GH, Conrad, JM, Cowen, D, Cruz Silva, AH, Daughhetee, J, Davis, JC, Day, M, de André, JPAM, De Clercq, C, del Pino Rosendo, E, Dembinski, H, De Ridder, S, Desiati, P, de Vries, KD, de Wasseige, G, de With, M, DeYoung, T, Díaz-Vélez, JC, di Lorenzo, V, Dumm, JP, Dunkman, M, Eberhardt, B, Ehrhardt, T, Eichmann, B, Euler, S, Evenson, PA, Fahey, S, Fazely, AR, Feintzeig, J, Felde, J, Filimonov, K, Finley, C, Flis, S, Fösig, CC, Fuchs, T, Gaisser, TK, Gaior, R, Gallagher, J, Gerhardt, L, Ghorbani, K, Gier, D, Gladstone, L, Glagla, M, Glüsenkamp, T, Goldschmidt, A, Golup, G, Gonzalez, JG, Góra, D, Grant, D, Griffith, Z, Groß, A, Ha, C, Haack, C, Haj Ismail, A, Hallgren, A, Halzen, F, Hansen, E, Hansmann, B, Hanson, K, Hebecker, D, Heereman, D, Helbing, K, Hellauer, R, Hickford, S, Hignight, J, Hill, GC, Hoffman, KD, Hoffmann, R, Holzapfel, K, Homeier, A, Hoshina, K, Huang, F, Huber, M, Huelsnitz, W, Hulth, PO, Hultqvist, K, In, S, Ishihara, A, Jacobi, E, Japaridze, GS, Jeong, M, Jero, K, Jones, BJP, Jurkovic, M, Kappes, A, Karg, T, Karle, A, Kauer, M, Keivani, A, Kelley, JL, Kemp, J, Kheirandish, A, Kiryluk, J, Klein, SR, Kohnen, G, Koirala, R, Kolanoski, H, Konietz, R, Köpke, L, Kopper, C, Kopper, S, Koskinen, DJ, Kowalski, M, Krings, K, Kroll, G, Kroll, M, Krückl, G, Kunnen, J, Kurahashi, N, Kuwabara, T, Labare, M, Lanfranchi, JL, Larson, MJ, Lesiak-Bzdak, M, Leuermann, M, Leuner, J, Lu, L, Lünemann, J, Madsen, J, Maggi, G, Mahn, KBM, Mandelartz, M, Maruyama, R, Mase, K, Matis, HS, Maunu, R, McNally, F, Meagher, K, Medici, M, Meli, A, Menne, T, Merino, G, Meures, T, Miarecki, S, Middell, E, Mohrmann, L, Montaruli, T, Morse, R, Nahnhauer, R, Naumann, U, Neer, G, Niederhausen, H, Nowicki, SC, Nygren, DR, Obertacke Pollmann, A, Olivas, A, Omairat, A, O'Murchadha, A, Palczewski, T, Pandya, H, Pankova, DV, Paul, L, Pepper, JA, Pérez de los Heros, C, Pfendner, C, Pieloth, D, Pinat, E, Posselt, J, Price, PB, Przybylski, GT, Quinnan, M, Raab, C, Rädel, L, Rameez, M, Rawlins, K, Reimann, R, Relich, M, Resconi, E, Rhode, W, Richman, M, Richter, S, Riedel, B, Robertson, S, Rongen, M, Rott, C, Ruhe, T, Ryckbosch, D, Sabbatini, L, Sander, HG, Sandrock, A, Sandroos, J, Sarkar, S, Schatto, K, Schimp, M, Schmidt, T, Schoenen, S, Schöneberg, S, Schönwald, A, Schulte, L, Schumacher, L, Seckel, D, Seunarine, S, Soldin, D, Song, M, Spiczak, GM, Spiering, C, Stahlberg, M, Stamatikos, M, Stanev, T, Stasik, A, Steuer, A, Stezelberger, T, Stokstad, RG, Stößl, A, Ström, R, Strotjohann, NL, Sullivan, GW, Sutherland, M, Taavola, H, Taboada, I, Tatar, J, Ter-Antonyan, S, Terliuk, A, Tešić, G, Tilav, S, Toale, PA, Tobin, MN, Toscano, S, Tosi, D, Tselengidou, M, Turcati, A, Unger, E, Usner, M, Vallecorsa, S, Vandenbroucke, J, van Eijndhoven, N, Vanheule, S, van Santen, J, Veenkamp, J, Vehring, M, Voge, M, Vraeghe, M, Walck, C, Wallace, A, Wallraff, M, Wandkowsky, N, Weaver, C, Wendt, C, Westerhoff, S, Whelan, BJ, Wiebe, K, Wiebusch, CH, Wille, L, Williams, DR, Wills, L, Wissing, H, Wolf, M, Wood, TR, Woschnagg, K, Xu, DL, Xu, XW, Xu, Y, Yanez, JP, Yodh, G, Yoshida, S & Zoll, M 2016, 'Neutrino oscillation studies with IceCube-DeepCore', Nuclear Physics B, vol. 908, pp. 161-177. https://doi.org/10.1016/j.nuclphysb.2016.03.028

Neutrino oscillation studies with IceCube-DeepCore. / Aartsen, M. G.; Abraham, K.; Ackermann, M.; Adams, J.; Aguilar, J. A.; Ahlers, M.; Ahrens, M.; Altmann, D.; Anderson, Tyler Brooks; Ansseau, I.; Archinger, M.; Arguelles, C.; Arlen, T. C.; Auffenberg, J.; Bai, X.; Barwick, S. W.; Baum, V.; Bay, R.; Beatty, J. J.; Becker Tjus, J.; Becker, K. H.; Beiser, E.; Berghaus, P.; Berley, D.; Bernardini, E.; Bernhard, A.; Besson, D. Z.; Binder, G.; Bindig, D.; Bissok, M.; Blaufuss, E.; Blumenthal, J.; Boersma, D. J.; Bohm, C.; Börner, M.; Bos, F.; Bose, D.; Böser, S.; Botner, O.; Braun, J.; Brayeur, L.; Bretz, H. P.; Buzinsky, N.; Casey, J.; Casier, M.; Cheung, E.; Chirkin, D.; Christov, A.; Clark, K.; Classen, L.; Coenders, S.; Collin, G. H.; Conrad, J. M.; Cowen, Douglas; Cruz Silva, A. H.; Daughhetee, J.; Davis, J. C.; Day, M.; de André, J. P.A.M.; De Clercq, C.; del Pino Rosendo, E.; Dembinski, H.; De Ridder, S.; Desiati, P.; de Vries, K. D.; de Wasseige, G.; de With, M.; DeYoung, T.; Díaz-Vélez, J. C.; di Lorenzo, V.; Dumm, J. P.; Dunkman, M.; Eberhardt, B.; Ehrhardt, T.; Eichmann, B.; Euler, S.; Evenson, P. A.; Fahey, S.; Fazely, A. R.; Feintzeig, J.; Felde, J.; Filimonov, K.; Finley, C.; Flis, S.; Fösig, C. C.; Fuchs, T.; Gaisser, T. K.; Gaior, R.; Gallagher, J.; Gerhardt, L.; Ghorbani, K.; Gier, D.; Gladstone, L.; Glagla, M.; Glüsenkamp, T.; Goldschmidt, A.; Golup, G.; Gonzalez, J. G.; Góra, D.; Grant, D.; Griffith, Z.; Groß, A.; Ha, C.; Haack, C.; Haj Ismail, A.; Hallgren, A.; Halzen, F.; Hansen, E.; Hansmann, B.; Hanson, K.; Hebecker, D.; Heereman, D.; Helbing, K.; Hellauer, R.; Hickford, S.; Hignight, J.; Hill, G. C.; Hoffman, K. D.; Hoffmann, R.; Holzapfel, K.; Homeier, A.; Hoshina, K.; Huang, F.; Huber, M.; Huelsnitz, W.; Hulth, P. O.; Hultqvist, K.; In, S.; Ishihara, A.; Jacobi, E.; Japaridze, G. S.; Jeong, M.; Jero, K.; Jones, B. J.P.; Jurkovic, M.; Kappes, A.; Karg, T.; Karle, A.; Kauer, M.; Keivani, A.; Kelley, J. L.; Kemp, J.; Kheirandish, A.; Kiryluk, J.; Klein, S. R.; Kohnen, G.; Koirala, R.; Kolanoski, H.; Konietz, R.; Köpke, L.; Kopper, C.; Kopper, S.; Koskinen, D. J.; Kowalski, M.; Krings, K.; Kroll, G.; Kroll, M.; Krückl, G.; Kunnen, J.; Kurahashi, N.; Kuwabara, T.; Labare, M.; Lanfranchi, J. L.; Larson, M. J.; Lesiak-Bzdak, M.; Leuermann, M.; Leuner, J.; Lu, L.; Lünemann, J.; Madsen, J.; Maggi, G.; Mahn, K. B.M.; Mandelartz, M.; Maruyama, R.; Mase, K.; Matis, H. S.; Maunu, R.; McNally, F.; Meagher, K.; Medici, M.; Meli, A.; Menne, T.; Merino, G.; Meures, T.; Miarecki, S.; Middell, E.; Mohrmann, L.; Montaruli, T.; Morse, R.; Nahnhauer, R.; Naumann, U.; Neer, G.; Niederhausen, H.; Nowicki, S. C.; Nygren, D. R.; Obertacke Pollmann, A.; Olivas, A.; Omairat, A.; O'Murchadha, A.; Palczewski, T.; Pandya, H.; Pankova, D. V.; Paul, L.; Pepper, J. A.; Pérez de los Heros, C.; Pfendner, C.; Pieloth, D.; Pinat, E.; Posselt, J.; Price, P. B.; Przybylski, G. T.; Quinnan, M.; Raab, C.; Rädel, L.; Rameez, M.; Rawlins, K.; Reimann, R.; Relich, M.; Resconi, E.; Rhode, W.; Richman, M.; Richter, S.; Riedel, B.; Robertson, S.; Rongen, M.; Rott, C.; Ruhe, T.; Ryckbosch, D.; Sabbatini, L.; Sander, H. G.; Sandrock, A.; Sandroos, J.; Sarkar, S.; Schatto, K.; Schimp, M.; Schmidt, T.; Schoenen, S.; Schöneberg, S.; Schönwald, A.; Schulte, L.; Schumacher, L.; Seckel, D.; Seunarine, S.; Soldin, D.; Song, M.; Spiczak, G. M.; Spiering, C.; Stahlberg, M.; Stamatikos, M.; Stanev, T.; Stasik, A.; Steuer, A.; Stezelberger, T.; Stokstad, R. G.; Stößl, A.; Ström, R.; Strotjohann, N. L.; Sullivan, G. W.; Sutherland, M.; Taavola, H.; Taboada, I.; Tatar, J.; Ter-Antonyan, S.; Terliuk, A.; Tešić, G.; Tilav, S.; Toale, P. A.; Tobin, M. N.; Toscano, S.; Tosi, D.; Tselengidou, M.; Turcati, A.; Unger, E.; Usner, M.; Vallecorsa, S.; Vandenbroucke, J.; van Eijndhoven, N.; Vanheule, S.; van Santen, J.; Veenkamp, J.; Vehring, M.; Voge, M.; Vraeghe, M.; Walck, C.; Wallace, A.; Wallraff, M.; Wandkowsky, N.; Weaver, Ch; Wendt, C.; Westerhoff, S.; Whelan, B. J.; Wiebe, K.; Wiebusch, C. H.; Wille, L.; Williams, D. R.; Wills, L.; Wissing, H.; Wolf, M.; Wood, T. R.; Woschnagg, K.; Xu, D. L.; Xu, X. W.; Xu, Y.; Yanez, J. P.; Yodh, G.; Yoshida, S.; Zoll, M.

In: Nuclear Physics B, Vol. 908, 31.01.2016, p. 161-177.

Research output: Contribution to journalArticle

TY - JOUR

T1 - Neutrino oscillation studies with IceCube-DeepCore

AU - Aartsen, M. G.

AU - Abraham, K.

AU - Ackermann, M.

AU - Adams, J.

AU - Aguilar, J. A.

AU - Ahlers, M.

AU - Ahrens, M.

AU - Altmann, D.

AU - Anderson, Tyler Brooks

AU - Ansseau, I.

AU - Archinger, M.

AU - Arguelles, C.

AU - Arlen, T. C.

AU - Auffenberg, J.

AU - Bai, X.

AU - Barwick, S. W.

AU - Baum, V.

AU - Bay, R.

AU - Beatty, J. J.

AU - Becker Tjus, J.

AU - Becker, K. H.

AU - Beiser, E.

AU - Berghaus, P.

AU - Berley, D.

AU - Bernardini, E.

AU - Bernhard, A.

AU - Besson, D. Z.

AU - Binder, G.

AU - Bindig, D.

AU - Bissok, M.

AU - Blaufuss, E.

AU - Blumenthal, J.

AU - Boersma, D. J.

AU - Bohm, C.

AU - Börner, M.

AU - Bos, F.

AU - Bose, D.

AU - Böser, S.

AU - Botner, O.

AU - Braun, J.

AU - Brayeur, L.

AU - Bretz, H. P.

AU - Buzinsky, N.

AU - Casey, J.

AU - Casier, M.

AU - Cheung, E.

AU - Chirkin, D.

AU - Christov, A.

AU - Clark, K.

AU - Classen, L.

AU - Coenders, S.

AU - Collin, G. H.

AU - Conrad, J. M.

AU - Cowen, Douglas

AU - Cruz Silva, A. H.

AU - Daughhetee, J.

AU - Davis, J. C.

AU - Day, M.

AU - de André, J. P.A.M.

AU - De Clercq, C.

AU - del Pino Rosendo, E.

AU - Dembinski, H.

AU - De Ridder, S.

AU - Desiati, P.

AU - de Vries, K. D.

AU - de Wasseige, G.

AU - de With, M.

AU - DeYoung, T.

AU - Díaz-Vélez, J. C.

AU - di Lorenzo, V.

AU - Dumm, J. P.

AU - Dunkman, M.

AU - Eberhardt, B.

AU - Ehrhardt, T.

AU - Eichmann, B.

AU - Euler, S.

AU - Evenson, P. A.

AU - Fahey, S.

AU - Fazely, A. R.

AU - Feintzeig, J.

AU - Felde, J.

AU - Filimonov, K.

AU - Finley, C.

AU - Flis, S.

AU - Fösig, C. C.

AU - Fuchs, T.

AU - Gaisser, T. K.

AU - Gaior, R.

AU - Gallagher, J.

AU - Gerhardt, L.

AU - Ghorbani, K.

AU - Gier, D.

AU - Gladstone, L.

AU - Glagla, M.

AU - Glüsenkamp, T.

AU - Goldschmidt, A.

AU - Golup, G.

AU - Gonzalez, J. G.

AU - Góra, D.

AU - Grant, D.

AU - Griffith, Z.

AU - Groß, A.

AU - Ha, C.

AU - Haack, C.

AU - Haj Ismail, A.

AU - Hallgren, A.

AU - Halzen, F.

AU - Hansen, E.

AU - Hansmann, B.

AU - Hanson, K.

AU - Hebecker, D.

AU - Heereman, D.

AU - Helbing, K.

AU - Hellauer, R.

AU - Hickford, S.

AU - Hignight, J.

AU - Hill, G. C.

AU - Hoffman, K. D.

AU - Hoffmann, R.

AU - Holzapfel, K.

AU - Homeier, A.

AU - Hoshina, K.

AU - Huang, F.

AU - Huber, M.

AU - Huelsnitz, W.

AU - Hulth, P. O.

AU - Hultqvist, K.

AU - In, S.

AU - Ishihara, A.

AU - Jacobi, E.

AU - Japaridze, G. S.

AU - Jeong, M.

AU - Jero, K.

AU - Jones, B. J.P.

AU - Jurkovic, M.

AU - Kappes, A.

AU - Karg, T.

AU - Karle, A.

AU - Kauer, M.

AU - Keivani, A.

AU - Kelley, J. L.

AU - Kemp, J.

AU - Kheirandish, A.

AU - Kiryluk, J.

AU - Klein, S. R.

AU - Kohnen, G.

AU - Koirala, R.

AU - Kolanoski, H.

AU - Konietz, R.

AU - Köpke, L.

AU - Kopper, C.

AU - Kopper, S.

AU - Koskinen, D. J.

AU - Kowalski, M.

AU - Krings, K.

AU - Kroll, G.

AU - Kroll, M.

AU - Krückl, G.

AU - Kunnen, J.

AU - Kurahashi, N.

AU - Kuwabara, T.

AU - Labare, M.

AU - Lanfranchi, J. L.

AU - Larson, M. J.

AU - Lesiak-Bzdak, M.

AU - Leuermann, M.

AU - Leuner, J.

AU - Lu, L.

AU - Lünemann, J.

AU - Madsen, J.

AU - Maggi, G.

AU - Mahn, K. B.M.

AU - Mandelartz, M.

AU - Maruyama, R.

AU - Mase, K.

AU - Matis, H. S.

AU - Maunu, R.

AU - McNally, F.

AU - Meagher, K.

AU - Medici, M.

AU - Meli, A.

AU - Menne, T.

AU - Merino, G.

AU - Meures, T.

AU - Miarecki, S.

AU - Middell, E.

AU - Mohrmann, L.

AU - Montaruli, T.

AU - Morse, R.

AU - Nahnhauer, R.

AU - Naumann, U.

AU - Neer, G.

AU - Niederhausen, H.

AU - Nowicki, S. C.

AU - Nygren, D. R.

AU - Obertacke Pollmann, A.

AU - Olivas, A.

AU - Omairat, A.

AU - O'Murchadha, A.

AU - Palczewski, T.

AU - Pandya, H.

AU - Pankova, D. V.

AU - Paul, L.

AU - Pepper, J. A.

AU - Pérez de los Heros, C.

AU - Pfendner, C.

AU - Pieloth, D.

AU - Pinat, E.

AU - Posselt, J.

AU - Price, P. B.

AU - Przybylski, G. T.

AU - Quinnan, M.

AU - Raab, C.

AU - Rädel, L.

AU - Rameez, M.

AU - Rawlins, K.

AU - Reimann, R.

AU - Relich, M.

AU - Resconi, E.

AU - Rhode, W.

AU - Richman, M.

AU - Richter, S.

AU - Riedel, B.

AU - Robertson, S.

AU - Rongen, M.

AU - Rott, C.

AU - Ruhe, T.

AU - Ryckbosch, D.

AU - Sabbatini, L.

AU - Sander, H. G.

AU - Sandrock, A.

AU - Sandroos, J.

AU - Sarkar, S.

AU - Schatto, K.

AU - Schimp, M.

AU - Schmidt, T.

AU - Schoenen, S.

AU - Schöneberg, S.

AU - Schönwald, A.

AU - Schulte, L.

AU - Schumacher, L.

AU - Seckel, D.

AU - Seunarine, S.

AU - Soldin, D.

AU - Song, M.

AU - Spiczak, G. M.

AU - Spiering, C.

AU - Stahlberg, M.

AU - Stamatikos, M.

AU - Stanev, T.

AU - Stasik, A.

AU - Steuer, A.

AU - Stezelberger, T.

AU - Stokstad, R. G.

AU - Stößl, A.

AU - Ström, R.

AU - Strotjohann, N. L.

AU - Sullivan, G. W.

AU - Sutherland, M.

AU - Taavola, H.

AU - Taboada, I.

AU - Tatar, J.

AU - Ter-Antonyan, S.

AU - Terliuk, A.

AU - Tešić, G.

AU - Tilav, S.

AU - Toale, P. A.

AU - Tobin, M. N.

AU - Toscano, S.

AU - Tosi, D.

AU - Tselengidou, M.

AU - Turcati, A.

AU - Unger, E.

AU - Usner, M.

AU - Vallecorsa, S.

AU - Vandenbroucke, J.

AU - van Eijndhoven, N.

AU - Vanheule, S.

AU - van Santen, J.

AU - Veenkamp, J.

AU - Vehring, M.

AU - Voge, M.

AU - Vraeghe, M.

AU - Walck, C.

AU - Wallace, A.

AU - Wallraff, M.

AU - Wandkowsky, N.

AU - Weaver, Ch

AU - Wendt, C.

AU - Westerhoff, S.

AU - Whelan, B. J.

AU - Wiebe, K.

AU - Wiebusch, C. H.

AU - Wille, L.

AU - Williams, D. R.

AU - Wills, L.

AU - Wissing, H.

AU - Wolf, M.

AU - Wood, T. R.

AU - Woschnagg, K.

AU - Xu, D. L.

AU - Xu, X. W.

AU - Xu, Y.

AU - Yanez, J. P.

AU - Yodh, G.

AU - Yoshida, S.

AU - Zoll, M.

PY - 2016/1/31

Y1 - 2016/1/31

N2 - IceCube, a gigaton-scale neutrino detector located at the South Pole, was primarily designed to search for astrophysical neutrinos with energies of PeV and higher. This goal has been achieved with the detection of the highest energy neutrinos to date. At the other end of the energy spectrum, the DeepCore extension lowers the energy threshold of the detector to approximately 10 GeV and opens the door for oscillation studies using atmospheric neutrinos. An analysis of the disappearance of these neutrinos has been completed, with the results produced being complementary with dedicated oscillation experiments. Following a review of the detector principle and performance, the method used to make these calculations, as well as the results, is detailed. Finally, the future prospects of IceCube-DeepCore and the next generation of neutrino experiments at the South Pole (IceCube-Gen2, specifically the PINGU sub-detector) are briefly discussed.

AB - IceCube, a gigaton-scale neutrino detector located at the South Pole, was primarily designed to search for astrophysical neutrinos with energies of PeV and higher. This goal has been achieved with the detection of the highest energy neutrinos to date. At the other end of the energy spectrum, the DeepCore extension lowers the energy threshold of the detector to approximately 10 GeV and opens the door for oscillation studies using atmospheric neutrinos. An analysis of the disappearance of these neutrinos has been completed, with the results produced being complementary with dedicated oscillation experiments. Following a review of the detector principle and performance, the method used to make these calculations, as well as the results, is detailed. Finally, the future prospects of IceCube-DeepCore and the next generation of neutrino experiments at the South Pole (IceCube-Gen2, specifically the PINGU sub-detector) are briefly discussed.

UR - http://www.scopus.com/inward/record.url?scp=84961990501&partnerID=8YFLogxK

UR - http://www.scopus.com/inward/citedby.url?scp=84961990501&partnerID=8YFLogxK

U2 - 10.1016/j.nuclphysb.2016.03.028

DO - 10.1016/j.nuclphysb.2016.03.028

M3 - Article

AN - SCOPUS:84961990501

VL - 908

SP - 161

EP - 177

JO - Nuclear Physics B

JF - Nuclear Physics B

SN - 0550-3213

ER -

Aartsen MG, Abraham K, Ackermann M, Adams J, Aguilar JA, Ahlers M et al. Neutrino oscillation studies with IceCube-DeepCore. Nuclear Physics B. 2016 Jan 31;908:161-177. https://doi.org/10.1016/j.nuclphysb.2016.03.028