Accès ouvert déclaré
2022
article
Searches for Connections between Dark Matter and High-Energy Neutrinos with IceCube
R. Abbasi, M. Ackermann, J. Adams, J. A. Aguilar, M. Ahlers, M. Ahrens, Jean-Marco Alameddine, A. A. Alves, N. M. Amin, K. Andeen, T. Anderson, G. Anton, C. Argüelles, Y. Ashida, S. Athanasiadou, S. Axani, X. Bai, Aswathi Balagopal V, M. Baricevic, S. W. Barwick, Vedant Basu, S. Baur, R. Bay, J. J. Beatty, K. -H. Becker, Julia Becker Tjus, J. Beise, C. Bellenghi, S. Benda, S. BenZvi, D. Berley, E. Bernardini, D. Z. Besson, G. Binder, D. Bindig, E. Blaufuss, Summer Blot, F. Bontempo, J. Y. Book, J. Borowka, S. Böser, O. Botner, Jakob Bottcher, E. Bourbeau, F. Bradascio, J. Braun, B. Brinson, S. Bron, J. Brostean-Kaiser, Ryan T. Burley, R. S. Busse, Michael Campana, Erin Carnie-Bronca, C. Chen, Z. Chen, D. Chirkin, Koun Choi, Brian A. Clark, K. Clark, L. Classen, A. Coleman, G. H. Collin, A. Connolly, Janet M. Conrad, Paul Coppin, Pablo Correa, D. F. Cowen, R. Cross, C. Dappen, P. Dave, C. De Clercq, J. J. DeLaunay, H.-P. Dembinski, K. Deoskar, Amruta Desai, P. Desiati, Krijn D. de Vries, G. de Wasseige, T. DeYoung, A. Diaz, Juan Carlos Diaz-Velez, M. Dittmer, H. Dujmovic, M. A. DuVernois, T. Ehrhardt, P. Eller, R. Engel, H. Erpenbeck, J. Evans, P. A. Evenson, Kwok Lung Fan, A. R. Fazely, A. Fedynitch, N. Feigl, S. Fiedlschuster, A. T. Fienberg, C. Finley, D. Fox, A. Franckowiak, E. Friedman, A. Fritz, P. Fürst, T. K. Gaisser, J. Gallagher, Erik Ganster, A. Garcia, S. Garrappa, L. Gerhardt, A. Ghadimi, C. Glaser, T. Glauch, T. Glüsenkamp, N. Goehlke, J. G. Gonzalez, Sreetama Goswami, D. Grant, T. Grégoire, S. Griswold, C. Günther, Pascal Gutjahr, Christian Haack, A. Hallgren, R. Halliday, L. Halve, F. Halzen, Hassane Hamdaoui, M. Ha Minh, K. Hanson, J. Hardin, A. A. Harnisch, A. Haungs, K. Helbing, Jonas Hellrung, F. Henningsen, Emma C. Hettinger, L. Heuermann, S. Hickford, J. Hignight, Gary C. Hill, K. D. Hoffman, K. Hoshina, Wenjie Hou, T. Huber, K. Hultqvist, M. Hünnefeld, R. Hussain, K. Hymon, N. Iovine, A. Ishihara, M. Jansson, G. Sh. Japaridze, M. Jeong, Miaochen Jin, B. J. P. Jones, Woosik Kang, X. Kang, D. Kappesser, Leonora Kardum, M. Karl, A. Karle, U. Katz, M. Kauer, J. L. Kelley, Ali Kheirandish, K. Kin, S. R. Klein, A. Kochocki, R. Koirala, Hermann Kolanoski, T. Kontrimas, C. Kopper, S. Kopper, D. J. Koskinen, Paras Koundal, M. Kovacevich, Marek P. Kowalski, T. Kozynets, E. Krupczak, E. Kun, N. Kurahashi, Neha Navnitkumar Lad, Cristina Lagunas Gualda, M. J. Larson, Frederik Hermann Lauber, J. P. Lazar, Adrianna Leszczyńska, M. Lincetto, M. Liubarska, F. Lucarelli, A. Ludwig, W. Luszczak, Y. Lyu, J. Madsen, K. B. M. Mahn, Y. Makino, Sarah Mancina, W. Marie Sainte, Ioana Codrina Mariş, I. Martinez-Soler, R. Maruyama, S. McCarthy, T. McElroy, F. McNally, James Vincent Mead, K. Meagher, S. Mechbal, A. Medina, M. Meier, S. Meighen-Berger, Yarno Merckx, J. Micallef, D. Mockler, T. Montaruli, R. Morse, T. Mukherjee, R. Naab, R. Nagai, U. Naumann, J. Necker, H. Niederhausen, Mehr Un Nisa, S. C. Nowicki, Anna Obertacke Pollmann, M. Oehler, B. Oeyen, A. Olivas, J. Osborn, Erin O’Sullivan, H. Pandya, D. V. Pankova, N. Park, G. K. Parker, E. N. Paudel, L. Paul, Carlos Pérez de los Heros, L. Peters, J. Peterson, S. Philippen, S. Pieper, A. Pizzuto, M. Plum, Y. Popovych, A. Porcelli, M. Prado Rodriguez, B. Pries, G. T. Przybylski, C. Raab, J. Rack-Helleis, A. Raissi, M. Rameez, K. Rawlins, Immacolata Carmen Rea, Z. Rechav, Abdul Rehman, Patrick Reichherzer, G. Renzi, Elisa Resconi, S. Reusch, Wolfgang Rhode, M. Richman, B. Riedel, E. J. Roberts, S. Robertson, G. Roellinghoff, Martin Rongen, C. Rott, T. Ruhe, D. Ryckbosch, Devyn Rysewyk Cantu, Ibrahim Safa, J. Saffer, D. Salazar-Gallegos, P. Sampathkumar, S. E. Sanchez Herrera, A. Sandrock, Marcos Santander, K. Satalecka, M. Schaufel, H. Schieler, S. Schindler, T. Schmidt, Austin Schneider, J. Schneider, Frank Schröder, Lisa Johanna Schumacher, Georg Schwefer, S. Sclafani, D. Seckel, S. Seunarine, A. Sharma, S. Shefali, N. Shimizu, M. Silva, B. Skrzypek, B. Smithers, R. Snihur, J. Soedingrekso, A. Sogaard, D. Soldin, C. Spannfellner, G. M. Spiczak, C. Spiering, M. Stamatikos, T. Stanev, R. Stein, J. Stettner, T. Stezelberger, T. Stürwald, Thomas Stuttard, G. W. Sullivan, I. Taboada, Samvel Ter-Antonyan, J. Thwaites, S. Tilav, K. Tollefson, S. Toscano, D. Tosi, Alexandra Trettin, M. Tselengidou, C. F. Tung, A. Turcati, R. Turcotte, Jean Pierre Twagirayezu, B. Ty, K. Upshaw, N. Valtonen-Mattila, J. Vandenbroucke, Nick van Eijndhoven, David Vannerom, J. van Santen, J. Veitch-Michaelis, S. Verpoest, C. Walck, W. Wang, T. B. Watson, C. Weaver, P. Weigel, A. Weindl, J. Weldert, C. Wendt, J. Werthebach, M. Weyrauch, N. Whitehorn, C. H. Wiebusch, N. Willey, D. R. Williams, J. P. Yanez, M. Wolf, G. Wrede, J. Wulff, X. W. Xu, Shigeru YOSHIDA, S. Yu, T. Yuan, Z. Zhang, P. Zhelnin
4Citations signalées, ce qui n’est pas une note de qualité
1Institutions déclarées
1Pays d’affiliation déclarés
Rattachement africain : de.
Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
In this work, we present the results of searches for signatures of dark matter decay or annihilation into Standard Model particles, and secret neutrino interactions with dark matter. Neutrinos could be produced in the decay or annihilation of galactic or extragalactic dark matter. Additionally, if an interaction between dark matter and neutrinos exists then dark matter will interact with extragalactic neutrinos. In particular galactic dark matter will induce an anisotropy in the neutrino sky if this interaction is present. We use seven and a half years of the High-Energy Starting Event (HESE) sample data, which measures neutrinos in the energy range of approximately 60 TeV to 10 PeV, to study these phenomena. This all-sky event selection is dominated by extragalactic neutrinos. For dark matter of $\sim$ 1 PeV in mass, we constrain the velocity-averaged annihilation cross section to be smaller than $10^{-23}$cm$^3$/s for the exclusive $\mu^+\mu^-$ channel and $10^{-22}$ cm$^3$/s for the $b\bar b$ channel. For the same mass, we constrain the lifetime of dark matter to be larger than $10^{28}$ s for all channels studied, except for decaying exclusively to $b\bar b$ where it is bounded to be larger than $10^{27}$ s. Finally, we also search for evidence of astrophysical neutrinos scattering on galactic dark matter in two scenarios. For fermionic dark matter with a vector mediator, we constrain the dimensionless coupling associated with this interaction to be less than 0.1 for dark matter mass of 0.1 GeV and a mediator mass of $10^{-4}~$ GeV. In the case of scalar dark matter with a fermionic mediator, we constrain the coupling to be less than 0.1 for dark matter and mediator masses below 1 MeV.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
Le contrôle bibliographique ouvert
La source scientifique ouverte est momentanément indisponible.
Où se fait cette recherche
RWTH Aachen University.
Une affiliation ne permet pas de déduire la nationalité d’un auteur.
Les sujets associés
Dark Matter and Cosmic PhenomenaAstrophysics and Cosmic PhenomenaParticle Detector Development and Performance