Zobrazeno 1 - 10
of 5 951
pro vyhledávání: '"A Nelles"'
Autor:
Terveer, K., Bouma, S., Buitink, S., Corstanje, A., Desmet, M., Falcke, H., Hare, B. M., Hörandel, J. R., Huege, T., Karastathis, N., Laub, P., Mulrey, K., Nelles, A., Scholten, O., Turekova, P., Thoudam, S., Trinh, G., ter Veen, S.
The LOw Frequency ARray (LOFAR) has successfully measured cosmic rays for over a decade now. With its dense core of antenna fields in the Netherlands, it is an ideal tool for studying the radio emission from extensive air showers in the $10^{16}$ eV
Externí odkaz:
http://arxiv.org/abs/2410.07681
Autor:
Herkersdorf, Max Heinz, Nelles, Oliver
A novel excitation signal design strategy based on a receding horizon control inspired optimization is presented. The proposed method is shown to effectively generate space-filling designs within the input space of a nonlinear dynamic process, thereb
Externí odkaz:
http://arxiv.org/abs/2410.00504
The effectiveness of data-driven techniques significantly relies on the input signal used to generate the training data. Nevertheless, there is a notable gap in research when it comes to designing excitation signals for identifying nonlinear dynamic
Externí odkaz:
http://arxiv.org/abs/2410.00500
Multi-stage threats like advanced persistent threats (APT) pose severe risks by stealing data and destroying infrastructure, with detection being challenging. APTs use novel attack vectors and evade signature-based detection by obfuscating their netw
Externí odkaz:
http://arxiv.org/abs/2406.13186
Autor:
Agarwal, S., Aguilar, J. A., Ali, S., Allison, P., Betts, M., Besson, D., Bishop, A., Botner, O., Bouma, S., Buitink, S., Cataldo, M., Clark, B. A., Coleman, A., Couberly, K., de Kockere, S., de Vries, K. D., Deaconu, C., DuVernois, M. A., Glaser, C., Glüsenkamp, T., Hallgren, A., Hallmann, S., Hanson, J. C., Hendricks, B., Henrichs, J., Heyer, N., Hornhuber, C., Hughes, K., Karg, T., Karle, A., Kelley, J. L., Korntheuer, M., Kowalski, M., Kravchenko, I., Krebs, R., Lahmann, R., Latif, U., Laub, P., Liu, C. -H., Marsee, M. J., Meyers, Z. S., Mikhailova, M., Monstein, C., Mulrey, K., Muzio, M., Nelles, A., Novikov, A., Nozdrina, A., Oberla, E., Oeyen, B., Punsuebsay, N., Pyras, L., Ravn, M., Ryckbosch, D., Schlüter, F., Scholten, O., Seckel, D., Seikh, M. F. H., Stoffels, J., Terveer, K., Toscano, S., Tosi, D., Broeck, D. J. Van Den, van Eijndhoven, N., Vieregg, A. G., Vijai, A., Welling, C., Williams, D. R., Windischhofer, P., Wissel, S., Young, R., Zink, A.
Publikováno v:
Astroparticle Physics 164 (2025) 103024, ISSN 0927-6505
The Radio Neutrino Observatory - Greenland (RNO-G) seeks discovery of ultra-high energy neutrinos from the cosmos through their interactions in ice. The science program extends beyond particle astrophysics to include radioglaciology and, as we show h
Externí odkaz:
http://arxiv.org/abs/2404.14995
Autor:
Bouma, Sjoerd, Nelles, Anna
The IceCube-Gen2 facility will extend the energy range of IceCube to ultra-high energies. The key component to detect neutrinos with energies above 10 PeV is a large array of in-ice radio detectors. In previous work, direction reconstruction algorith
Externí odkaz:
http://arxiv.org/abs/2307.13971
Autor:
IceCube-Gen2, Abbasi, R., Ackermann, M., Adams, J., Agarwalla, S. K., Aguilar, J. A., Ahlers, M., Alameddine, J. M., Amin, N. M., Andeen, K., Anton, G., Argüelles, C., Ashida, Y., Athanasiadou, S., Audehm, J., Axani, S. N., Bai, X., V., A. Balagopal, Baricevic, M., Barwick, S. W., Basu, V., Bay, R., Tjus, J. Becker, Beise, J., Bellenghi, C., Benning, C., BenZvi, S., Berley, D., Bernardini, E., Besson, D. Z., Bishop, A., Blaufuss, E., Blot, S., Bohmer, M., Bontempo, F., Book, J. Y., Borowka, J., Meneguolo, C. Boscolo, Böser, S., Botner, O., Böttcher, J., Bouma, S., Bourbeau, E., Braun, J., Brinson, B., Brostean-Kaiser, J., Burley, R. T., Busse, R. S., Butterfield, D., Campana, M. A., Carloni, K., Carnie-Bronca, E. G., Cataldo, M., Chattopadhyay, S., Chau, N., Chen, C., Chen, Z., Chirkin, D., Choi, S., Clark, B. A., Clark, R., Classen, L., Coleman, A., Collin, G. H., Conrad, J. M., Cowen, D. F., Dasgupta, B., Dave, P., Deaconu, C., De Clercq, C., De Kockere, S., DeLaunay, J. J., Delgado, D., Deng, S., Deoskar, K., Desai, A., Desiati, P., de Vries, K. D., de Wasseige, G., DeYoung, T., Diaz, A., Díaz-Vélez, J. C., Dittmer, M., Domi, A., Dujmovic, H., DuVernois, M. A., Ehrhardt, T., Eller, P., Ellinger, E., Mentawi, S. El, Elsässer, D., Engel, R., Erpenbeck, H., Evans, J., Evans, J. J., Evenson, P. A., Fan, K. L., Fang, K., Farrag, K., Fazely, A. R., Fedynitch, A., Feigl, N., Fiedlschuster, S., Finley, C., Fischer, L., Flaggs, B., Fox, D., Franckowiak, A., Fritz, A., Fujii, T., Fürst, P., Gallagher, J., Ganster, E., Garcia, A., Gerhardt, L., Gernhaeuser, R., Ghadimi, A., Giri, P., Glaser, C., Glauch, T., Glüsenkamp, T., Goehlke, N., Goswami, S., Grant, D., Gray, S. J., Gries, O., Griffin, S., Griswold, S., Guevel, D., Günther, C., Gutjahr, P., Haack, C., Azim, T. Haji, Hallgren, A., Halliday, R., Hallmann, S., Halve, L., Halzen, F., Hamdaoui, H., Minh, M. Ha, Hanson, K., Hardin, J., Harnisch, A. A., Hatch, P., Haugen, J., Haungs, A., Heinen, D., Helbing, K., Hellrung, J., Hendricks, B., Henningsen, F., Henrichs, J., Heuermann, L., Heyer, N., Hickford, S., Hidvegi, A., Hignight, J., Hill, C., Hill, G. C., Hoffman, K. D., Hoffmann, B., Holzapfel, K., Hori, S., Hoshina, K., Hou, W., Huber, T., Huege, T., Hughes, K., Hultqvist, K., Hünnefeld, M., Hussain, R., Hymon, K., In, S., Ishihara, A., Jacquart, M., Janik, O., Jansson, M., Japaridze, G. S., Jeong, M., Jin, M., Jones, B. J. P., Kalekin, O., Kang, D., Kang, W., Kang, X., Kappes, A., Kappesser, D., Kardum, L., Karg, T., Karl, M., Karle, A., Katori, T., Katz, U., Kauer, M., Kelley, J. L., Zathul, A. Khatee, Kheirandish, A., Kiryluk, J., Klein, S. R., Kobayashi, T., Kochocki, A., Kolanoski, H., Kontrimas, T., Köpke, L., Kopper, C., Koskinen, D. J., Koundal, P., Kovacevich, M., Kowalski, M., Kozynets, T., Krauss, C. B., Kravchenko, I., Krishnamoorthi, J., Krupczak, E., Kumar, A., Kun, E., Kurahashi, N., Lad, N., Gualda, C. Lagunas, Larson, M. J., Latseva, S., Lauber, F., Lazar, J. P., Lee, J. W., DeHolton, K. Leonard, Leszczyńska, A., Lincetto, M., Liu, Q. R., Liubarska, M., Lohan, M., Lohfink, E., LoSecco, J., Love, C., Mariscal, C. J. Lozano, Lu, L., Lucarelli, F., Lyu, Y., Madsen, J., Mahn, K. B. M., Makino, Y., Mancina, S., Mandalia, S., Sainte, W. Marie, Mariş, I. C., Marka, S., Marka, Z., Marsee, M., Martinez-Soler, I., Maruyama, R., Mayhew, F., McElroy, T., McNally, F., Mead, J. V., Meagher, K., Mechbal, S., Medina, A., Meier, M., Merckx, Y., Merten, L., Meyers, Z., Micallef, J., Mikhailova, M., Mitchell, J., Montaruli, T., Moore, R. W., Morii, Y., Morse, R., Moulai, M., Mukherjee, T., Naab, R., Nagai, R., Nakos, M., Narayan, A., Naumann, U., Necker, J., Negi, A., Nelles, A., Neumann, M., Niederhausen, H., Nisa, M. U., Noell, A., Novikov, A., Nowicki, S. C., Nozdrina, A., Oberla, E., Pollmann, A. Obertacke, O'Dell, V., Oehler, M., Oeyen, B., Olivas, A., Ørsøe, R., Osborn, J., O'Sullivan, E., Papp, L., Park, N., Parker, G. K., Paudel, E. N., Paul, L., Heros, C. Pérez de los, Petersen, T. C., Peterson, J., Philippen, S., Pieper, S., Pinfold, J. L., Pizzuto, A., Plaisier, I., Plum, M., Pontén, A., Popovych, Y., Rodriguez, M. Prado, Pries, B., Procter-Murphy, R., Przybylski, G. T., Pyras, L., Rack-Helleis, J., Rameez, M., Rawlins, K., Rechav, Z., Rehman, A., Reichherzer, P., Renzi, G., Resconi, E., Reusch, S., Rhode, W., Riedel, B., Riegel, M., Rifaie, A., Roberts, E. J., Robertson, S., Rodan, S., Roellinghoff, G., Rongen, M., Rott, C., Ruhe, T., Ryckbosch, D., Safa, I., Saffer, J., Salazar-Gallegos, D., Sampathkumar, P., Herrera, S. E. Sanchez, Sandrock, A., Sandstrom, P., Santander, M., Sarkar, S., Savelberg, J., Savina, P., Schaufel, M., Schieler, H., Schindler, S., Schlickmann, L., Schlüter, B., Schlüter, F., Schmeisser, N., Schmidt, T., Schneider, J., Schröder, F. G., Schumacher, L., Schwefer, G., Sclafani, S., Seckel, D., Seikh, M., Seunarine, S., Shaevitz, M. H., Shah, R., Sharma, A., Shefali, S., Shimizu, N., Silva, M., Skrzypek, B., Smith, D., Smithers, B., Snihur, R., Soedingrekso, J., Søgaard, A., Soldin, D., Soldin, P., Sommani, G., Southall, D., Spannfellner, C., Spiczak, G. M., Spiering, C., Stamatikos, M., Stanev, T., Stezelberger, T., Stoffels, J., Stürwald, T., Stuttard, T., Sullivan, G. W., Taboada, I., Taketa, A., Tanaka, H. K. M., Ter-Antonyan, S., Thiesmeyer, M., Thompson, W. G., Thwaites, J., Tilav, S., Tollefson, K., Tönnis, C., Torres, J., Toscano, S., Tosi, D., Trettin, A., Tsunesada, Y., Tung, C. F., Turcotte, R., Twagirayezu, J. P., Ty, B., Elorrieta, M. A. Unland, Upadhyay, A. K., Upshaw, K., Valtonen-Mattila, N., Vandenbroucke, J., van Eijndhoven, N., Vannerom, D., van Santen, J., Vara, J., Veberic, D., Veitch-Michaelis, J., Venugopal, M., Verpoest, S., Vieregg, A., Vijai, A., Walck, C., Weaver, C., Weigel, P., Weindl, A., Weldert, J., Welling, C., Wendt, C., Werthebach, J., Weyrauch, M., Whitehorn, N., Wiebusch, C. H., Willey, N., Williams, D. R., Wissel, S., Witthaus, L., Wolf, A., Wolf, M., Wörner, G., Wrede, G., Wren, S., Xu, X. W., Yanez, J. P., Yildizci, E., Yoshida, S., Young, R., Yu, F., Yu, S., Yuan, T., Zhang, Z., Zhelnin, P., Zierke, S., Zimmerman, M.
IceCube-Gen2 is a planned next-generation neutrino observatory at the South Pole that builds upon the successful design of IceCube. Integrating two complementary detection technologies for neutrinos, optical and radio Cherenkov emission, in combinati
Externí odkaz:
http://arxiv.org/abs/2307.13048
Autor:
ARIANNA Collaboration, Anker, A., Baldi, P., Barwick, S. W., Beise, J., Besson, D. Z., Chen, P., Gaswint, G., Glaser, C., Hallgren, A., Hanson, J. C., Klein, S. R., Kleinfelder, S. A., Lahmann, R., Liu, J., Nam, J., Nelles, A., Paul, M. P., Persichilli, C., Plaisier, I., Rice-Smith, R., Tatar, J., Terveer, K., Wang, S. -H, Zhao, L.
The ARIANNA experiment is an Askaryan radio detector designed to measure high-energy neutrino induced cascades within the Antarctic ice. Ultra-high-energy neutrinos above $10^{16}$ eV have an extremely low flux, so experimental data captured at trigg
Externí odkaz:
http://arxiv.org/abs/2307.07188
Publikováno v:
JCAP10(2023)043
Experiments seeking to detect radio emission stemming from neutrino interactions will soon reach sensitivities that bring a detection within reach. Since experiments like RNO-G or the future IceCube-Gen2 target more than an order of magnitude more ef
Externí odkaz:
http://arxiv.org/abs/2307.04736
Autor:
Mitra, P., Scholten, O., Trinh, T. N. G., Buitink, S., Bhavani, J., Corstanje, A., Desmet, M., Falcke, H., Hare, B. M., Hörandel, J. R., Huege, T., Karastathis, N., Krampah, G. K., Mulrey, K., Nelles, A., Pandya, H., Thoudam, S., de Vries, K. D., ter Veen, S.
Measuring the radio emission from cosmic ray particle cascades has proven to be a very efficient method to determine their properties such as the mass composition. Efficient modeling of the radio emission from air showers is crucial in order to extra
Externí odkaz:
http://arxiv.org/abs/2307.04242