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Binary neutron star (BNS) mergers can be sources of ultrahigh-energy (UHE) cosmic rays and potential emitters of UHE neutrinos.
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M. Maggiore et al. , Science Case for the Einstein Telescope, JCAP 03
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M. Shibata and K. Uryu, Gravitational waves from the merger of binary neutron stars in a fully general relativistic simulation, Prog. Theor. Phys. 107
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S. D. Barthelmy et al. , The Burst Alert Telescope (BAT) on the Swift MIDEX mission, Space Sci. Rev. 120
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M. G. Aartsen et al. (IceCube-Gen2), IceCube-Gen2: the window to the extreme Universe, J. Phys. G 48
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E. D. Hall., Cosmic explorer: A next-generation ground-based gravitational-wave observatory, Galaxies 10
2022
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P. Fritschel, K. Kuns, J. Driggers, A. Effler, B. Lantz, D. Ottaway, S. Ballmer, K. Dooley, R. Adhikari, M. Evans, B. Farr, G. Gonzalez, P. Schmidt, and S. Raja, Report from the LSC Post-O5 Study Group , Tech. Rep. T2200287 (LIGO, 2022)
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V. Decoene, O. Martineau-Huynh, and M. Tueros, Radio wavefront of very inclined extensive air-showers: A simulation study for extended and sparse radio arrays, Astroparticle Physics 145
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IceCube-Gen2 Collaboration, IceCube-Gen2 Technical Design Report , Tech. Rep. (2024)
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