Образец цитирования:
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М. И. Панасюк, Л. И. Мирошниченко, “Ускорение частиц в космосе: универсальный механизм?”, УФН, 192:4 (2022), 413–442; M. I. Panasyuk, L. I. Miroshnichenko, “Particle acceleration in space: a universal mechanism?”, Phys. Usp., 65:4 (2022), 379–405
Л. М. Зелёный, Х. В. Малова, Е. Е. Григоренко, В. Ю. Попов, “Тонкие токовые слои: от работ Гинзбурга – Сыроватского до наших дней”, УФН, 186:11 (2016), 1153–1188; L. M. Zelenyi, H. V. Malova, E. E. Grigorenko, V. Yu. Popov, “Thin current sheets: from the work of Ginzburg and Syrovatskii to the present day”, Phys. Usp., 59:11 (2016), 1057–1090
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Emilio Migneco, Giorgio Riccobene, NATO Science Series, 209, Neutrinos and Explosive Events in the Universe, 2005, 219
R. Ramaty, R. E. Lingenfelter, B. Kozlovsky, Space Sciences Series of ISSI, 13, The Astrophysics of Galactic Cosmic Rays, 2001, 51
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M. V. K. Apparao, S. Ramadurai, “The effects of the nature of matter traversed by cosmic rays on its composition and energy spectrum”, J. Geophys. Res., 72:23 (1967), 5991
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R. F. O'Connell, “Cosmic-Ray Electron Spectrum and the Universal Blackbody Radiation at 3°K”, Phys. Rev. Lett., 17:24 (1966), 1232
M. F. Kaplon, G. Skadron, “Model for the origin and properties of the cosmic‐ray rigidity spectrum”, Reviews of Geophysics, 4:2 (1966), 177
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L.V. Kurnosova, V.I. Logachev, L.A. Razorenov, M.I. Fradkin, “Energy spectra of different groups of cosmic ray nuclei from Cerenkov counter measurements in satellite vehicles”, Planetary and Space Science, 11:2 (1963), 193
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Maurice M. Shapiro, “Supernovae as Cosmic-Ray Sources”, Science, 135:3499 (1962), 175
L.V. Kurnosova, L.A. Razorenov, M.I. Fradkin, “Short-term increases in the intensity of the nuclear component of cosmic rays associated with solar activity”, Planetary and Space Science, 9:1-2 (1962), 41
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