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 Matem. Mod., 2008, Volume 20, Number 6, Pages 67–78 (Mi mm2440)

Monte-Carlo modeling of the experiment on ultrahigh-energy cosmic ray and neutrino detection using circumlunar orbital radio detector

G. A. Gusev, B. N. Lomonosov, N. G. Polukhina, V. A. Ryabov, V. A. Tsarev, V. A. Chechin

P. N. Lebedev Physical Institute, Russian Academy of Sciences

Abstract: A mathematical model of ultrahigh-energy cosmic ray and neutrino detection by radio method is elaborated. Algorithms of solving a problem of revealing by a lunar orbital radio detector of radio pulses emitted by hadronic and electromagnetic cascades initiated by high-energy particles in near-surface layer of lunar regolith are considered. These algorithms can be used for modeling of experiments which utilize radio-transparent media (ice, salt, sand, etc.) as a target of interaction.

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Citation: G. A. Gusev, B. N. Lomonosov, N. G. Polukhina, V. A. Ryabov, V. A. Tsarev, V. A. Chechin, “Monte-Carlo modeling of the experiment on ultrahigh-energy cosmic ray and neutrino detection using circumlunar orbital radio detector”, Matem. Mod., 20:6 (2008), 67–78

Citation in format AMSBIB
\Bibitem{GusLomPol08} \by G.~A.~Gusev, B.~N.~Lomonosov, N.~G.~Polukhina, V.~A.~Ryabov, V.~A.~Tsarev, V.~A.~Chechin \paper Monte-Carlo modeling of the experiment on ultrahigh-energy cosmic ray and neutrino detection using circumlunar orbital radio detector \jour Matem. Mod. \yr 2008 \vol 20 \issue 6 \pages 67--78 \mathnet{http://mi.mathnet.ru/mm2440} \zmath{https://zbmath.org/?q=an:1150.78304} 

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Citing articles on Google Scholar: Russian citations, English citations
Related articles on Google Scholar: Russian articles, English articles

This publication is cited in the following articles:
1. Ryabov V.A., “Recording of ultrahigh-energy astrophysical neutrinos”, Physics of Particles and Nuclei, 40:1 (2009), 1–28
2. Gusev G.A., Lomonosov B.N., Polukhina N.G., Ryabov V.A., Tsarev V.A., Chechin V.A., “Simulation of an experiment on detecting ultra-high-energy particles with regard to the structure of the lunar soil surface layer”, Technical Physics, 55:1 (2010), 98–103
3. G. A. Gusev, B. N. Lomonosov, V. A. Ryabov, V. A. Chechin, “Ice satellites of Solar System planets and the on-orbit radio detection of ultrahigh-energy particles”, Phys. Usp., 53:9 (2010), 915–921
4. Ryabov V.A., Gusev G.A., Lomonosov B.N., Polukhina N.G., Chechin V.A., “Lunar orbital radio detector and detection potential of ultrahigh-energy particles”, Bulletin of the Lebedev Physics Institute, 37:4 (2010), 98–103
5. Gusev G.A., “Vavilov-Cherenkov radiation from a model cascade developing near the lunar surface”, Bulletin of the Lebedev Physics Institute, 38:12 (2011), 354–359
6. Gusev G.A., “Scattering of unformed Vavilov-Cherenkov radiation by the rough lunar surface during its emergence into vacuum”, Bulletin of the Lebedev Physics Institute, 38:12 (2011), 366–370
7. Gusev G.A., Chechin V.A., Lomonosov B.N., Polukhina N.G., Ryabov V.A., “Design of the LORD experiment and perspectives of ultrahigh-energy particles observation”, Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 662, Suppl. 1 (2012), S99–S102
8. Gusev G.A., Chechin V.A., Lomonosov B.N., Ryabov V.A., “Targets and radio detectors in far-space region for registration of ultra high-energy cosmic rays and neutrino”, Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 662, Suppl. 1 (2012), S103–S105
9. Gusev G.A., Chechin V.A., Ryabov V.A., “Lunar Space Missions for Ultrahigh-Energy Cosmic Rays and Neutrinos Observation”, 5th International Workshop on Acoustic and Radio Eev Neutrino Detection Activities (Arena 2012), AIP Conference Proceedings, 1535, eds. Lahmann R., Eberl T., Graf K., James C., Huege T., Karg T., Nahnhauer R., Amer Inst Physics, 2013, 37–40
10. Ryabov V.A., Gusev G.A., Chechin V.A., “Lord Space Experiment for Investigation of Ultrahigh Energy Cosmic-Ray Particles”, 23rd European Cosmic Ray Symposium (and 32nd Russian Cosmic Ray Conference), Journal of Physics Conference Series, 409, IOP Publishing Ltd, 2013, 012096
11. Gusev G.A., Maung K., “Is It Possible To Determine the Chemical Composition of Cosmic Rays in the “Lord” Lunar Experiment?”, Bull. Lebedev Phys. Inst., 41:4 (2014), 110–114
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