Issues

 / 

2026

 / 

June

  

Reviews of topical problems


Experimental research on antiprotons and light antinuclei in cosmic rays

,  , ,
National Research Nuclear University ‘MEPhI’, Kashirskoe shosse 31, Moscow, 115409, Russian Federation

This review summarizes recent experimental studies of antiparticles in cosmic rays, including antiprotons, antideuterons, and antihelium nuclei. The discussion is centered on results from both direct and indirect measurements of the galactic component, while a separate section addresses secondary antiparticles (albedo), among them particles trapped in the Earth's magnetic field and part of the radiation belts. To provide historical context, the review also outlines the earliest accelerator-based experiments in which light antinuclei were first detected, thereby establishing the fundamental possibility of their existence in nature. A detailed overview is given of balloon-borne, satellite, and ground-based missions dedicated to measurements of the antiproton energy spectrum across a wide interval — from several hundred MeV to several hundred GeV — with indirect estimates extending to energies above 1 TeV. Particular attention is devoted to recent progress in searches for heavier antinuclei, such as antideuterons and antihelium nuclei, which hold significant promise for studies of dark matter and the baryon asymmetry of the Universe. Finally, prospects for future experiments are considered in light of current observational constraints and technological challenges.

Typically, an English full text is available in about 1 month from the date of publication of the original article.

Keywords: antiprotons, antinuclei, sources of antinuclei, antiproton detection experiments, cosmic rays
PACS: 96.50.S−
DOI: 10.3367/UFNe.2025.12.040063
URL: https://ufn.ru/en/articles/2026/6/b/
Citation: Mayorov A G, Rodenko S A, Chelidze K S, Yulbarisov R F "Experimental research on antiprotons and light antinuclei in cosmic rays" Phys. Usp. 69 (6) (2026)

Received: 22nd, September 2025, revised: 25th, November 2025, 2nd, December 2025

Оригинал: Майоров А Г, Роденко С А, Челидзе К С, Юлбарисов Р Ф «Экспериментальные исследования антипротонов и лёгких антиядер в космических лучах» УФН 196 563–600 (2026); DOI: 10.3367/UFNr.2025.12.040063

References (286) ↓ Similar articles (20)

  1. Xu Q, Brown L M Am. J. Phys. 55 23 (1987)
  2. Millikan R A, Cameron G H Nature 121 19 (1928)
  3. Skobelzyn D Z. Phys. 43 354 (1927)
  4. Skobelzyn D Z. Phys. 54 686 (1929)
  5. Skobel’tsyn D V Usp. Fiz. Nauk 93 331 (1967)
  6. Lidvanskii A S Usp. Fiz. Nauk 194 999 (2024); Lidvansky A S Phys. Usp. 67 943 (2024)
  7. Ginzburg V L Usp. Fiz. Nauk 74 521 (1961); Ginzburg V L Sov. Phys. Usp. 4 553 (1962)
  8. Ginzburg V L, Ptuskin V S Usp. Fiz. Nauk 117 585 (1975); Ginzburg V L, Ptuskin V S Sov. Phys. Usp. 18 931 (1975)
  9. Ginzburg V L Usp. Fiz. Nauk 166 169 (1996); Ginzburg V L Phys. Usp. 39 155 (1996)
  10. Anderson C D Phys. Rev. 43 491 (1933)
  11. Bogomolov E A et al 16th Intern. Cosmic Ray Conf. Vol. 1 (S Miyake) (Tokyo: Institute for Cosmic Ray Research, Univ. of Tokyo, 1979) p. 330
  12. Golden R L et al Phys. Rev. Lett. 43 1196 (1979)
  13. Ting S "The First Five Years of the Alpha Magnetic Spectrometer on the International Space Station:Unlocking the Secrets of the Cosmos" CERN Colloquium, December 8, 2016 (2016)
  14. Adriani O et al Phys. Rev. Lett. 102 051101 (2009)
  15. Aguilar M et al Phys. Rev. Lett. 117 091103 (2016)
  16. Adriani O et al Phys. Rev. Lett. 111 081102 (2013)
  17. Buffington A, Schindler S M, Pennypacker C R Astrophys. J. 248 1179 (1981)
  18. Salamon M H et al Astrophys. J. 349 78 (1990)
  19. Streitmatter E R et al Proc. of the 21st Intern. Cosmic Ray Conf., 6-19 January 1990, Adelaide, Australia Vol. 3 (1990) p. 277, OG Sessions
  20. Moats A et al Proc. of the 21st Intern. Cosmic Ray Conf., 6-19 January 1990, Adelaide, Australia Vol. 3 (1990) p. 284, OG Sessions
  21. Buffington A et al Nature 236 335 (1972)
  22. Evoli C, Gaggero D, Grasso D J. Cosmol. Astropart. Phys. 2015 (12) 039 (2015)
  23. Kappl R, Winkler M W J. Cosmol. Astropart. Phys. 2014 (09) 051 (2014)
  24. Giesen G et al J. Cosmol. Astropart. Phys. 2015 (09) 023 (2015)
  25. Kappl R, Reinert A, Winkler M W J. Cosmol. Astropart. Phys. 2015 (10) 034 (2015)
  26. Donato F et al Astrophys. J. 563 172 (2001)
  27. Gaisser T K, Schaefer R K Astrophys. J. 394 174 (1992)
  28. Yoshimura K et al Phys. Rev. Lett. 75 3792 (1995)
  29. Moiseev A et al Astrophys. J. 474 479 (1997)
  30. Moskalenko I V et al Astrophys. J. 565 280 (2002)
  31. Cirelli M et al Nucl. Phys. B 813 1 (2009)
  32. Young S, Byrnes Ch T J. Cosmol. Astropart. Phys. 2015 (04) 034 (2015)
  33. Alfvén H Rev. Mod. Phys. 37 652 (1965)
  34. Mertsch P, Sarkar S Phys. Rev. D 90 061301 (2014)
  35. Barrau A et al Astron. Astrophys. 388 676 (2002)
  36. Donato F et al Phys. Rev. D 69 063501 (2004)
  37. Donato F et al Phys. Rev. Lett. 102 071301 (2009)
  38. Strong A W, Moskalenko I V, Ptuskin V S Annu. Rev. Nucl. Part. Sci. 57 285 (2007)
  39. Silk J, Srednicki M Phys. Rev. Lett. 53 624 (1984)
  40. Orito S, Mitsui T, Maki K Phys. Lett. B 318 169 (1996)
  41. Ellis J et al Phys. Lett. B 214 403 (1988)
  42. Bottino A et al Phys. Rev. D 58 123503 (1998)
  43. Potgieter M S, Burger R A Astron. Astrophys. 233 598 (1990)
  44. Aslam O P M et al Astrophys. J. 953 101 (2023)
  45. Aguilar M et al (AMS Collab.) Phys. Rev. Lett. 134 051002 (2025)
  46. Adriani O et al Astrophys. J. Lett. 737 L29 (2011)
  47. Pugacheva G et al Astropart. Phys. 20 257 (2003)
  48. Gusev A A et al Geophys. Res. Lett. 30 1161 (2003)
  49. Selesnick R S et al Geophys. Res. Lett. 34 L20104 (2007)
  50. Jayanthi U B, Gusev A A Adv. Astron. 2011 471094 (2011)
  51. Donato F, Fornengo N, Salati P Phys. Rev. D 62 043003 (2000)
  52. Carlson E et al Phys. Rev. D 89 076005 (2014)
  53. Dirac P A M Proc. R. Soc. London A 117 610 (1928)
  54. Dirac P A M Proc. R. Soc. London A 133 60 (1931)
  55. Chamberlain O et al Phys. Rev. 100 947 (1955)
  56. Chamberlain O et al Phys. Rev. 101 909 (1956)
  57. Chamberlain O et al Nuovo Cimento 3 447 (1956)
  58. Cork B et al Phys. Rev. 104 1193 (1956)
  59. Massam T et al Nuovo Cimento A 63 10 (1965)
  60. Dorfan D E et al Phys. Rev. Lett. 14 1003 (1965)
  61. Camilleri L Phys. Rep. 144 51 (1987)
  62. Bizzarri U et al Nuovo Cimento A 73 42 (1983)
  63. van der Meer S "Stochastic damping of betatron oscillations in the ISR" CERN/ISR-PO/72-31 (Geneva: CERN, 1972); van der Meer S https://cds.cern.ch/record/312939
  64. Bregman M et al Phys. Lett. B 78 174 (1978)
  65. Ado Yu M Usp. Fiz. Nauk 145 87 (1985); Ado Yu M Sov. Phys. Usp. 28 54 (1985)
  66. Arnison G et al (UA1 Collab.) Phys. Lett. B 122 103 (1983)
  67. Arnison G et al (UA1 Collab.) Phys. Lett. B 126 398 (1983)
  68. Bellone R et al "The design and prototype tests of the CERN anti-proton production target" CERN-SPS-80-9-ABT (Geneva: CERN, 1980)
  69. Jones E et al IEEE Trans. Nucl. Sci. 30 2778 (1983)
  70. van der Meer S Usp. Fiz. Nauk 147 405 (1985); Van der Meer S "Stochastic cooling and accumulation of antiprotons" Nobel Lecture. Stockholm, 11 December, 1984 (1984)
  71. Eades J, Hartmann F J Rev. Mod. Phys. 71 373 (1999)
  72. Batty C J Nucl. Phys. A 601 425 (1996)
  73. Batty C J Rep. Prog. Phys. 52 1165 (1989)
  74. Baur G et al Phys. Lett. B 368 251 (1996)
  75. Charman A E (The ALPHA Collab.) Nature Commun. 4 1785 (2013)
  76. Amole C et al Nature 483 439 (2012)
  77. Amole C et al Phys. Plasmas 20 043510 (2013)
  78. Ahmadi M et al Nature 541 506 (2017)
  79. Anderson D L, Sher M, Turan I Phys. Rev. D 70 016001 (2004)
  80. Ulmer S et al Nature 524 196 (2015)
  81. Jentschura U D Symmetry 13 1192 (2021)
  82. Sakharov A D Pis’ma ZhETF 5 32 (1967); Sakharov A D JETP Lett. 5 24 (1967)
  83. Peoples J IEEE Trans. Nucl. Sci. 30 1970 (1983)
  84. Mills F E Nucl. Instrum. Meth. Phys. Res. A 271 176 (1988)
  85. Abe F et al (CDF Collab.) Phys. Rev. Lett. 74 2626 (1995)
  86. Abachi S et al (D0 Collab.) Phys. Rev. Lett. 74 2632 (1995)
  87. Abe F et al Nucl. Instrum. Meth. Phys. Res. A 271 387 (1988)
  88. Bross A D (for the DØ Collab.) Nucl. Phys. B Proc. Suppl. 44 12 (1995)
  89. Aaltonen T et al (CDF Collab.) Phys. Rev. D 85 072002 (2012)
  90. Blanford G et al Phys. Rev. Lett. 80 3037 (1998)
  91. Aumann T et al Eur. Phys. J. A 58 88 (2022)
  92. Hansen P G, Jonson B, Jensen A S Annu. Rev. Nucl. Part. Sci. 45 591 (1995); Hansen P G, Jonson B, Jensen A S CTHSP-95-08 (Gothenburg: Chalmers Univ. of Technology, Department of Physics, 1995)
  93. Kienle P Nucl. Instrum. Meth. Phys. Res. B 214 191 (2004)
  94. Brown B A et al Phys. Rev. C 76 034305 (2007)
  95. Trzcińska A et al Phys. Rev. Lett. 87 082501 (2001)
  96. Tanihata I et al Phys. Rev. Lett. 55 2676 (1985)
  97. Hansen P G, Jonson B Europhys. Lett. 4 409 (1987)
  98. Cohen J S Phys. Rev. A 69 022501 (2004)
  99. The ALPHA Collab., Charman A E Nature Commun. 4 1785 (2013)
  100. Anderson E K et al Nature 621 716 (2023)
  101. Maury S Hyperfine Interactions 109 43 (1997)
  102. Hori M, Walz J Prog. Part. Nucl. Phys. 72 206 (2013)
  103. Bartmann W et al Philos. Trans. R. Soc. A 376 20170266 (2018)
  104. Bertsche W A Philos. Trans. R. Soc. A 376 20170265 (2018)
  105. Villata M Ann. Physik 536 2300519 (2024)
  106. Andresen G B et al (ALPHA Collab.) Nature Phys. 7 558 (2011)
  107. Kuroda N et al Nature Commun. 5 3089 (2014)
  108. Gibney E Nature 554 412 (2018)
  109. Holzscheiter M H et al Radiotherapy Oncology 81 233 (2006)
  110. Sellner S et al Hyperfine Interactions 213 159 (2012)
  111. Stegeby H Cancer Rep. 1 e1128 (2018)
  112. Van Allen J A, Gangnes A V Phys. Rev. 79 51 (1950)
  113. Fradkin M I Zh. Eksp. Teor. Fiz. 29 147 (1955); Fradkin M I Sov. Phys. JETP 2 87 (1956)
  114. Steigman G Annu. Rev. Astron. Astrophys. 14 339 (1976)
  115. Aizu H et al Phys. Rev. 121 1206 (1961)
  116. Grigorov N L et al Planet. Space Sci. 9 875 (1962)
  117. Grigorov N L i dr Zh. Eksp. Teor. Fiz. 45 394 (1963); Grigorov N L et al Sov. Phys. JETP 18 272 (1964)
  118. Apparao M V K Nature 215 727 (1967)
  119. Powell C F, Fowler P H, Perkins D H The Study Of Elementary Particles By The Photographic Method: An Account Of The Principal Techniques And Discoveries, Illustrated By An Atlas Of Photomicrographs (New York: Pergamon Press, 1959)
  120. Grigorov N L i dr Iskusstvennye Sputniki Zemli Vyp. 10 (M.: Izd-vo AN SSSR, 1961) p. 96
  121. Babayan Kh P et al High Energy Interactions, Proc. from the 8th Intern. Cosmic Ray Conf. Vol. 5 (1963) p. 51
  122. Ivanova N S, Gagarin Yu F, Kulikov V N Kosmicheskie Issledovaniya 6 83 (1968); Ivanova N S, Gagarin Yu F, Kulikov V N Cosmic Res. 6 69 (1968)
  123. Stephens S A, Golden R L Space Sci. Rev. 46 31 (1988)
  124. Chamberlain O et al Phys. Rev. 113 1615 (1959)
  125. Apparao M V K Can. J. Phys. 46 S654 (1968)
  126. Greenhill J G, Clarke A R, Elliot H Nature 230 170 (1971)
  127. Bogomolov E A et al Intern. Cosmic Ray Conf., 17th, Paris, France, July 13-25, 1981, Conf. Papers Vol. 9 (Gif-sur-Yvette: Commissariat a l’Energie Atomique, 1981) p. 146
  128. Bogomolov E A i dr Zh. Tekh. Fiz. 69 (9) 99 (1999); Bogomolov E A et al Tech. Phys. 44 1089 (1999)
  129. Bogomolov E A et al Proc. Of The 16th Intern. Cosmic Ray Conf. Vol. 1 (Ed. S Miyake) (Tokyo: Intern. Union of Pure and Applied Physics, 1979) p. 330
  130. Bogomolov E A et al Proc. of the 20th Intern. Cosmic Ray Conf. Vol. 2 (1987) p. 72
  131. Bogomolov E A et al Proc. of the 21st Intern. Cosmic Ray Conf., Adelaide, Australia Vol. 3 (1990) p. 288
  132. Golden R L et al Astrophys. Lett. 24 75 (1984)
  133. Badhwar G D et al Astrophys. Space Sci. 37 283 (1975)
  134. Gaisser T K, Mauger B G Astrophys. J. 252 L57 (1981)
  135. Stephens S A Astrophys. Space Sci. 76 87 (1981)
  136. Peters B, Westergaard N J Astrophys. Space Sci. 48 21 (1977)
  137. Hof M et al Astrophys. J. 467 L33 (1996)
  138. Basini G et al Proc. of the 26th Intern. Cosmic Ray Conf., August 17-25, 1999, Salt Lake City, Utah, USA (Eds D Kieda, M Salamon, B Dingus, 1999) p. 77
  139. Mitchell J W et al Phys. Rev. Lett. 76 3057 (1996)
  140. Boezio M et al Astrophys. J. 487 415 (1997)
  141. Gaisser T K, Schaefer R K Astrophys. J. 394 174 (1992)
  142. Webber W R, Potgieter M S Astrophys. J. 344 779 (1989)
  143. Boezio M et al Astrophys. J. 561 787 (2001)
  144. Matsumoto S et al Energy Budget In The High Energy Universe. Proc. Of The Intern. Workshop, Kashiwa, Japan, 22-24 February 2006 (Eds K Sato, J Hisano) (Singapore: World Scientific, 2007) p. 327
  145. Simon M, Molnar A, Roesler S Astrophys. J. 499 250 (1998)
  146. Menn W et al Proc. Of The 25th Intern. Cosmic Ray Conf., 30 July - 6 August, 1997, Durban, South Africa Vol. 3 (Eds M S Potgieter, C Raubenheimer, D J van der Walt) (Transvaal, South Africa: Potchefstroom Univ., 1997) p. 409
  147. Kawrakow I, Mohring H J, Ranft J 27th Rencontres de Moriond: Electroweak Interactions and Unified Theories, 15-22 March 1992, Les Arcs, France (1992) p. 449
  148. Stochaj S J "Experimental measurement of low-energy antiprotons in the cosmic radiation" PhD Thesis (College Park, MD: Univ. Maryland, 1990)
  149. Orito S et al Phys. Rev. Lett. 84 1078 (2000)
  150. Asaoka Y et al Phys. Rev. Lett. 88 051101 (2002)
  151. Mitchell J W et al Nucl. Phys. B Proc. Suppl. 134 31 (2004)
  152. Haino S et al Phys. Lett. B 594 35 (2004)
  153. Yamamoto A et al Nucl. Phys. B Proc. Suppl. 166 62 (2007)
  154. Yamamoto A et al IEEE Trans. Magn. 24 1421 (1988)
  155. Yamamoto A Nucl. Phys. B Proc. Suppl. 113 299 (2002)
  156. Haino S et al Nucl. Instrum. Meth. Phys. Res. A 518 167 (2004)
  157. Sasaki M et al Adv. Space Res. 42 450 (2008)
  158. Abe K et al (BESS Collab.) Phys. Lett. B 670 103 (2008)
  159. Yoshimura K et al Adv. Space Res. 42 1664 (2008)
  160. Abe K et al Adv. Space Res. 60 806 (2017)
  161. Abe K et al Astrophys. J. 822 65 (2016)
  162. Yoshida T et al Adv. Space Res. 33 1755 (2004)
  163. Makida Y et al IEEE Trans. Appl. Supercond. 15 1248 (2005)
  164. Abe K et al Phys. Rev. Lett. 108 051102 (2012)
  165. Yamamoto A et al Adv. Space Res. 51 227 (2013)
  166. Adriani O et al Phys. Rev. Lett. 105 121101 (2010)
  167. Bieber J W et al Phys. Rev. Lett. 83 674 (1999)
  168. Labrador A W, Mewaldt R A Astrophys. J. 480 371 (1997)
  169. Fisk L A J. Geophys. Res. 76 221 (1971)
  170. Yamamoto A et al Adv. Space Res. 42 442 (2008)
  171. Haino S et al Proc. Of The 29th Intern. Cosmic Ray Conf. August 3-10, 2005, Pune, India Vol. 3 (Eds B Sripathi Acharya et al) (Mumbai: Tata Institute of Fundamental Research, 2005) p. 13
  172. Beach A S et al Phys. Rev. Lett. 87 271101 (2001)
  173. Aguilar M et al (AMS Collab.) "The Alpha Magnetic Spectrometer (AMS) on the International Space Station: Part I - results from the test flight on the space shuttle" Phys. Rep. 366 331 (2002)
  174. Aramaki T et al Astropart. Phys. 59 12 (2014)
  175. Picozza P et al Astropart. Phys. 27 296 (2007)
  176. Adriani O i dr Pis’ma ZhETF 96 693 (2013); Adriani O et al JETP Lett. 96 621 (2013)
  177. Adriani O et al Nucl. Instrum. Meth. Phys. Res. A 572 471 (2007)
  178. Hooper D, Linden T, Mertsch P J. Cosmol. Astropart. Phys. 2015 (03) 021 (2015)
  179. Kane G, Lu R, Watson S Phys. Lett. B 681 151 (2009)
  180. Adriani O et al Nature 458 607 (2009)
  181. Matsunaga H et al Phys. Rev. Lett. 81 4052 (1998)
  182. Ptuskin V S et al Astrophys. J. 642 902 (2006)
  183. Fusco P J. Phys. Conf. Ser. 1390 012063 (2019)
  184. Aguilar M et al Phys. Rep. 894 1 (2021)
  185. Hamaguchi K, Moroi T, Nakayama K Phys. Lett. B 747 523 (2015)
  186. Kachelriess M, Moskalenko I V, Ostapchenko S S Astrophys. J. 803 54 (2015)
  187. Chen Y-H, Cheung K, Tseng P-Y Phys. Rev. D 93 015015 (2016)
  188. Yuan Q et al Phys. Rev. D 95 083007 (2017)
  189. Winkler M W J. Cosmol. Astropart. Phys. 2017 (02) 048 (2017)
  190. Donato F et al Phys. Rev. D 96 043007 (2017)
  191. Lipari P Phys. Rev. D 95 063009 (2017)
  192. Bresci V et al Mon. Not. R. Astron. Soc. 488 2068 (2019)
  193. Cuoco A, Krämer M, Korsmeier M Phys. Rev. Lett. 118 191102 (2017)
  194. Reinert A, Winkler M W J. Cosmol. Astropart. Phys. 2018 (01) 055 (2018)
  195. Cholis I, Linden T, Hooper D Phys. Rev. D 99 103026 (2019)
  196. Cui M-Y et al Phys. Rev. Lett. 118 191101 (2017)
  197. Cuoco A et al Phys. Rev. D 99 103014 (2019)
  198. Carena M et al Phys. Rev. D 100 055002 (2019)
  199. Evoli C et al J. Cosmol. Astropart. Phys. 2017 (02) 015 (2017)
  200. Osteria G Nucl. Instrum. Meth. Phys. Res. A 958 162201 (2020)
  201. Stoessl A 38th Intern. Cosmic Ray Conf., ICRC2023, 26 July - 3 August, 2023, Nagoya, Japan (2023); Stoessl A PoS ICRC2023 1440 (2023)
  202. Rogers F et al Astropart. Phys. 145 102791 (2023)
  203. Stoessl A "Status of the GAPS Instrument and Flight Campaigns" EPS-HEP 2024
  204. NASA Scientific Balloon Campaigns in Antarctica, https://www.nasa.gov/blogs/scientific-balloons/
  205. Schael S et al Nucl. Instrum. Meth. Phys. Res. A 944 162561 (2019)
  206. Kirn T Nucl. Instrum. Meth. Phys. Res. A 1040 167215 (2022)
  207. Aguilar M et al (AMS Collab.) Phys. Rev. Lett. 114 171103 (2015)
  208. Adriani O et al Science 332 69 (2011)
  209. Panov A D i dr Izv. RAN. Ser. Fiz. 73 602 (2009); Panov A D et al Bull. Russ. Acad. Sci. Phys. 73 564 (2009)
  210. Adriani O et al (CALET Collab.) Phys. Rev. Lett. 122 181102 (2019)
  211. Yoon Y S et al Astrophys. J. 839 5 (2017)
  212. Cuoco A et al J. Cosmol. Astropart. Phys. 2017 (10) 053 (2017)
  213. Fuki M Int. J. Mod. Phys. A 20 6739 (2005)
  214. McIlwain C E Space Sci. Rev. 5 585 (1966)
  215. Pugacheva G, Martin I, Spjeldvik W J. Phys. Conf. Ser. 409 012041 (2013)
  216. Bickford J "Extraction of antiparticle concentrated in planetary magnetic fields" NIAC Phase II Year 1 Report, August 2007 (Cambridge, MA: Draper Laboratory, 2007); Bickford J http://www.centauri-dreams.org/wp-content/Bickford_Phase_II.pdf
  217. Bickford J et al 37th COSPAR Presentation, D33-0012-08
  218. Pöschl T et al Proc. of the 34th Intern. Cosmic Ray Conf., ICRC2015. 30 July - 6 August, 2015, The Hague, The Netherlands (2015); Pöschl T et al PoS ICRC2015 590 (2015)
  219. Huang C-Y Astropart. Phys. 27 440 (2007)
  220. Clark G W Phys. Rev. 108 450 (1957)
  221. Alexandreas D E et al Phys. Rev. D 43 1735 (1991)
  222. Urban M et al Nucl. Phys. B Proc. Suppl. 14 223 (1990)
  223. Amenomori M et al (Tibet ASγ Collab.) Phys. Rev. D 47 2675 (1993)
  224. Borione A et al Phys. Rev. D 49 1171 (1994)
  225. Ambrosio M et al Astropart. Phys. 20 145 (2003)
  226. Achard P et al Astropart. Phys. 23 411 (2005)
  227. Amenomori M et al Astropart. Phys. 28 137 (2007)
  228. Bartoli B et al (ARGO-YBJ Collab.) Phys. Rev. D 85 022002 (2012)
  229. Abeysekara A U et al (HAWC Collab.) Phys. Rev. D 97 102005 (2018)
  230. Cobb J H et al (The Soudan 2 Collab.) Phys. Rev. D 61 092002 (2000)
  231. Adamson P et al Astropart. Phys. 34 457 (2011)
  232. Bartoli B et al Nuovo Cimento C 24 669 (2001)
  233. Aartsen M G et al (IceCube Collab.) Phys. Rev. D 89 102004 (2014)
  234. Albert A et al Eur. Phys. J. C 78 1006 (2018)
  235. Bird R Proc. of the 34th Intern. Cosmic Ray Conf., ICRC2015, 30 July - 6 August, 2015. The Hague, The Netherlands (2016); Bird R PoS ICRC2015 852 (2016)
  236. Nan Yu et al Proc. 37th Intern. Cosmic Ray Conf., 2021 (2021); Nan Yu et al PoS ICRC2021 350 (2021)
  237. Wang Y et al Proc. 37th Intern. Cosmic Ray Conf., 2021 (2021); Wang Y et al PoS ICRC2021 356 (2021)
  238. Shuwang Cui et al Proc. 38th Intern. Cosmic Ray Conf., 2023 (2023); Shuwang Cui et al PoS ICRC2023 463 (2023)
  239. Maburee J et al J. Phys. Conf. Ser. 2653 012026 (2023)
  240. Antipov Yu M, Vishnevskii N K, Gorin Yu P Production of negative particles with low momenta by 70-GeV protons (Serpukhov: Inst. of High-Energy Physics, 1971)
  241. Antipov Yu M et al Phys. Lett. B 34 164 (1971)
  242. The STAR Collab. "Erratum: Observation of the antimatter helium-4 nucleus" Nature 475 412 (2011)
  243. De La Torre Luque P, Winkler M W, Linden T J. Cosmol. Astropart. Phys. 2024 (10) 017 (2024)
  244. Duperray R et al Phys. Rev. D 71 083013 (2005)
  245. Cirelli M et al J. High Energy Phys. 2014 (08) 09 (2014)
  246. Blum K et al Phys. Rev. D 96 103021 (2017)
  247. Oliva A, Tomassetti N, Feng J "Production of antimatter nuclei in Galactic cosmic rays" arXiv:1707.06918
  248. Kachelries M M, Ostapchenko S, Tjemsland J J. Cosmol. Astropart. Phys. 2020 (08) 048 (2020)
  249. Allkofer O C, Brockhausen D P Astrophys. Space Sci. 109 145 (1985)
  250. Evenson P Astrophys. J. 176 797 (1972)
  251. Cholis I, Linden T, Hooper D Phys. Rev. D 102 103019 (2020)
  252. Winkler M W, Linden T Phys. Rev. Lett. 126 101101 (2021)
  253. Korwar M, Profumo S Phys. Rev. D 111 023032 (2025)
  254. Donato F, Fornengo N, Maurin D Phys. Rev. D 78 043506 (2008)
  255. Streitmatter R E Nuovo Cimento C 19 835 (1996)
  256. Von Doetinchem P et al J. Cosmol. Astropart. Phys. 2020 (08) 035 (2020)
  257. Bykov A M et al J. Cosmol. Astropart. Phys. 2023 (08) 027 (2023)
  258. Golubkov V et al Symmetry 14 1953 (2022)
  259. Bondar A E et al J. Cosmol. Astropart. Phys. 2022 (03) 009 (2022)
  260. Khlopov M Yu, Kirichenko A O, Mayorov A G ""Anihelium flux from antimatter globular cluster" arXiv:2011.06973
  261. Smoot G F, Buffington A, Orth C D Phys. Rev. Lett. 35 258 (1975)
  262. Ormes J F et al Astrophys. J. 482 L187 (1997)
  263. Takayuki S et al Phys. Lett. B 422 319 (1998)
  264. Sasaki M et al Nucl. Phys. B Proc. Suppl. 113 202 (2002)
  265. Abe K et al Phys. Rev. Lett. 108 131301 (2012)
  266. Badhwar G D et al Nature 274 137 (1978)
  267. Golden R L et al Astrophys. J. 479 992 (1997)
  268. Alcaraz J et al Phys. Lett. B 461 387 (1999)
  269. Maiorov A G i dr Pis’ma ZhETF 93 704 (2011); Mayorov A G et al JETP Lett. 93 628 (2011)
  270. Adriani O et al Phys. Rep. 544 323 (2014)
  271. AMS Collab. "Unlocking the Secrets of the Cosmos: The First Five Years of AMS on the International Space Station. 19 May 2016" (Accessed: 18.07.2024), https://ams02.space/news/news/unlocking-secrets-cosmos-first-fiveyears-ams-international-space-station
  272. Gargiulo C "AMS-02: Status and Latest Results", CERN EP Detector Seminar Geneva, Switzerland, May 2025. (Accessed: 2025-08-14), https://indico.cern.ch/event/1542546/attachments/3064290/5420478/20250509_AMS_CorradoGargiulo.pdf
  273. Ting S 44th COSPAR Scientific Assembly, 16-24 July (2022), 3071
  274. Choutko V 44th COSPAR Scientific Assembly, 16-24 July (2022), 2083
  275. Poulin V et al Phys. Rev. D 99 023016 (2019)
  276. Ibarra A, Wild S Phys. Rev. D 88 023014 (2013)
  277. Fuke H et al Phys. Rev. Lett. 95 081101 (2005)
  278. Sakai K et al (BESS Collab.) Phys. Rev. Lett. 132 131001 (2024)
  279. Dal L A, Raklev A R Phys. Rev. D 89 103504 (2014)
  280. Korsmeier M, Donato F, Fornengo N Phys. Rev. D 97 103011 (2018)
  281. Herms J et al J. Cosmol. Astropart. Phys. 2017 (02) 018 (2017)
  282. Aramaki T et al Phys. Rep. 618 1 (2016)
  283. Oliva A "Anti-Nuclei in Primary Cosmic Rays with the AMS on the ISS" (2019) p. 14
  284. Oliva A, CERN Colloquium: Cosmic Rays, Antimatter, and Dark Matter, https://indico.cern.ch/event/1275785/; Presentation slides, slide 88. 2023, https://indico.cern.ch/event/1275785/attachments/2663918/4616641/CERN%20Colloquium-June-8-2023.pdf
  285. Kirn T Proc. Vienna Conf. on Instrumentation, VCI 2022, Vienna, Austria, February 2022; Conf. presentation, https://indico.cern.ch/event/1044975/contributions/4663642/
  286. Mori K et al Astrophys. J. 566 604 (2002)

© 1918–2026 Uspekhi Fizicheskikh Nauk
Email: ufn@ufn.ru Editorial office contacts About the journal Terms and conditions