Possible Studies at the First Stage of the NICA SPD Physics Program

Cover Page

Cite item

Full Text

Open Access Open Access
Restricted Access Access granted
Restricted Access Subscription Access

Abstract

Proposals of possible experiments based on employing a spin-physics detector (SPD) at the first stage of implementation of the NICA (Nuclotron based Ion Collider fAcility) research program are considered. The proposals include studies of collisions of polarized and unpolarized proton and deuteron beams at effective nucleon–nucleon energies of 
 GeV in the center-of-mass frame.

About the authors

Yu. N. Uzikov

Dzhelepov Laboratory of Nuclear Problems, Joint Institute for Nuclear Research; Faculty of Physics, Moscow State University; Dubna State University

Author for correspondence.
Email: uzikov@jinr.ru
Dubna, Russia; Moscow, Russia; Dubna, Russia

References

  1. V. M. Abazov, V. Abramov, L. G. Afanasyev, R. R. Akhunzyanov, A. V. Akindinov, N. Akopov, I. G. Alekseev, A. M. Aleshko, V. Yu. Alexakhin, G. D. Alexeev, M. Alexeev, A. Amoroso, I. V. Anikin, V. F. Andreev, V. A. Anosov, A. B. Arbuzov, et al., arXiv: 2102.00442.
  2. V. V. Abramov, A. Aleshko, V. A. Baskov, E. Boos, V. Bunichev, O. D. Dalkarov, R. El-Kholy, A. Galoyan, A. V. Guskov, V. T. Kim, E. Kokoulina, I. A. Koop, B. F. Kostenko, A. D. Kovalenko, V. P. Ladygin, A. B. Larionov, et al., Phys. Part. Nucl. 52, 1044 (2021); arXiv: 2102.08477.
  3. A. Arbuzov, A. Bacchetta, M. Butenschoen, F. G. Celiberto, U. D’Alesio, M. Deka, I. Denisenko, M. G. Echevarria, A. Efremov, N. Ya. Ivanov, A. Guskov, A. Karpishkov, Ya. Klopot, B. A. Kniehl, A. Kotzinian, S. Kumano, et al., Prog. Part. Nucl. Phys. 119, 103858 (2021); arXiv: 2011.15005.
  4. A. Mueller, in Proceedings of the 17th Rencontres de Moriond, Ed. by J. Tran Thanh Van (Editions Frontieres, Gif-sur-Yvette, France, 1982), Vol. I, p. 13.
  5. S. J. Brodsky, in Proceedings of the 13th Inter- national Symposium on Multiparticle Dynamics, Ed. by W. Kittel, W. Metzger, and A. Stergiou (World Scientific, Singapore, 1982), p. 963.
  6. S. J. Brodsky, Eur. Phys. J. A 52, 220 (2016).
  7. R. A. Arndt, W. J. Briscoe, I. I. Strakovsky, and R. L. Workman, Phys. Rev. C 76, 025209 (2007); arXiv: 0706.2195.
  8. Y. N. Uzikov, J. Haidenbauer, A. Bazarova, and A. A. Temerbayev, Phys. Part. Nucl. 53, 419 (2022); arXiv: 2011.04304.
  9. Y. N. Uzikov and A. Temerbayev, Phys. Rev. C 92, 014002 (2015); arXiv: 1506.08303.
  10. Y. N. Uzikov and J. Haidenbauer, Phys. Rev. C 94, 035501 (2016); arXiv: 1607.04409.
  11. A. Anselm and V. Gribov, Phys. Lett. B 40, 487 (1972).
  12. V. Khoze, A. Martin, and M. Ryskin, J. Phys. G 42, 025003 (2015); arXiv: 1410.0508.
  13. D. G. Crabb, R. C. Fernow, P. H. Hansen, A. D. Krisch, A. J. Salthouse, B. Sandler, K. M. Terwilliger, J. R. O’Fallon, E. A. Crosbie, L. G. Ratner, and P. F. Schultz, Phys. Rev. Lett. 41, 1257 (1978).
  14. S. J. Brodsky and G. de Teramond, Phys. Rev. Lett. 60, 1924 (1988).
  15. J. P. Ralston and B. Pire, Phys. Rev. Lett. 49, 1605 (1982).
  16. C. G. Granados and M. M. Sargsian, Phys. Rev. Lett. 103, 212001 (2009); arXiv: 0907.2269.
  17. G. L. Kane, J. Pumplin, and W. Repko, Phys. Rev. Lett. 41, 1689 (1978).
  18. S. B. Nurushev and M. G. Ryskin, Phys. At. Nucl. 69, 133 (2006); hep-ph/0405041.
  19. V. Abramov, Phys. At. Nucl. 72, 1872 (2009).
  20. T. Matsui and H. Satz, Phys. Lett. B 178, 416 (1986).
  21. D. Dutta, K. Hafidi, and M. Strikman, Prog. Part. Nucl. Phys. 69, 1 (2013); arXiv: 1211.2826.
  22. J. P. Ralston and B. Pire, Phys. Rev. Lett. 61, 1823 (1988).
  23. P. Jain, B. Pire, and J. P. Ralston, Phys. Rep. 271, 67 (1996); hep-ph/9511333.
  24. D. Bhetuwal, J. Matter, H. Szumila-Vance, M. L. Kabir, D. Dutta, R. Ent, D. Abrams, Z. Ahmed, B. Aljawrneh, S. Alsalmi, R. Ambrose, D. Androic, W. Armstrong, A. Asaturyan, K. Assumin-Gyimah, C. Ayerbe Gayoso, et al. (For the Hall C Collab.), Phys. Rev. Lett. 126, 082301 (2021); arXiv: 2011.00703.
  25. S. J. Brodsky and G. F. de Teramond, MDPI Phys. 4, 633 (2022); arXiv: 2202.13283.
  26. P. Jain, B. Pire, and J. P. Ralston, MDPI Phys. 4, 578 (2022); arXiv: 2203.02579.
  27. G. M. Huber, W. B. Li, W. Cosyn, and B. Pire, MDPI Phys. 4, 451 (2022); arXiv: 2202.04470.
  28. L. L. Frankfurt, E. Piasetzky, M. M. Sargsian, and M. I. Strikman, Phys. Rev. C 56, 2752 (1997); hep-ph/9607395.
  29. A. B. Larionov, Phys. Rev. C 107, 014605 (2023); arXiv: 2208.08832.
  30. F. M. Marqués, M. Labiche, N. A. Orr, J. C. Angélique, L. Axelsson, B. Benoit, U. C. Bergmann, M. J. G. Borge, W. N. Catford, S. P. G. Chappell, N. M. Clarke, G. Costa, N. Curtis, A. D’Arrigo, E. de Góes Brennand, F. de Oliveira Santos, et al., Phys. Rev. C 65, 044006 (2002); nucl-ex/0111001.
  31. H. Polinder, J. Haidenbauer, and U. G. Meissner, Phys. Lett. B 653, 29 (2007); arXiv: 0705.3753.
  32. J. Haidenbauer, U.-G. Meisner, and S. Petschauer, Nucl. Phys. A 954, 273 (2016); arXiv: 1511.05859.
  33. J.-M. Richard, Q. Wang, and Q. Zhao, Phys. Rev. C 91, 014003 (2015); arXiv: 1404.3473.
  34. M. Duer, T. Aumann, R. Gernhäuser, V. Panin, S. Paschalis, D. M. Rossi, N. L. Achouri, D. Ahn, H. Baba, C. A. Bertulani, M. Böhmer, K. Boretzky, C. Caesar, N. Chiga, A. Corsi, D. Cortina-Gil, et al., Nature 606, 678 (2022).
  35. R. Lazauskas, E. Hiyama, and J. Carbonell; arXiv: 2207.07575.
  36. M. Aguilar et al. (AMS Collab.), Phys. Rev. Lett. 110, 141102 (2013).
  37. M. Aguilar et al. (AMS Collab.), Phys. Rev. Lett. 117, 091103 (2016).
  38. O. Adriani et al. (PAMELA Collab.), Phys. Rep. 544, 323 (2014).
  39. A. Guskov and R. El-Kholy, Phys. Part. Nucl. Lett. 16, 216 (2019).
  40. V. Alexakhin, A. Guskov, Z. Hayman, R. El-Kholy, and A. Tkachenko; arXiv: 2008.04136.
  41. S. Kistryn, J. Lang, J. Liechti, Th. Maier, R. Müller, F. Nessi-Tedaldi, M. Simonius, J. Smyrski, S. Jaccard, W. Haeberli, and J. Sromicki, Phys. Rev. Lett. 58, 1616 (1987).
  42. N. Lockyer, T. A. Romanowski, J. D. Bowman, C. M. Hoffman, R. E. Mischke, D. E. Nagle, J. M. Potter, R. L. Talaga, E. C. Swallow, D. M. Alde, D. R. Moffett, and J. Zyskind, Phys. Rev. D 30, 860 (1984).
  43. S. Gardner, W. C. Haxton, and B. R. Holstein, Ann. Rev. Nucl. Part. Sci. 67, 69 (2017); arXiv: 1704.02617.
  44. D. P. Grosnick, D. A. Hill, T. Kasprzyk, D. Lopiano, Y. Ohashi, J. Sheppard, T. Shima, H. Spinka, R. Stanek, D. G. Underwood, A. Yokosawa, J. Bystricky, P. Chaumette, J. Derégel, G. Durand, J. Fabre, et al., Phys. Rev. D 55, 1159 (1997).
  45. N. Nikolaev, F. Rathmann, A. Silenko, and Y. Uzikov, Phys. Lett. B 811, 135983 (2020).
  46. L. B. Okun, ЯФ 1, 938 (1965).
  47. P. R. Huffman, N. R. Roberson, W. S. Wilburn, C. R. Gould, D. G. Haase, C. D. Keith, B. W. Raichle, M. L. Seely, and J. R. Walston, Phys. Rev. C 55, 2684 (1997); nucl-ex/9605005.
  48. P. Lenisa, F. Rathmann, L. Barion, S. Barsov, S. Bertelli, V. Carassiti, G. Ciullo, M. Contalbrigo, A. Cotta Ramusino, S. Dymov, R. Engels, D. Eversheim, R. Gebel, K. Grigoryev, J. Haiden- bauer, V. Hejny, et al., EPJ Tech. Instrum. 6, 2 (2019).
  49. A. Temerbayev and Y. Uzikov, Phys. At. Nucl. 78, 35 (2015).
  50. H. Clement, Prog. Part. Nucl. Phys. 93, 195 (2017); arXiv: 1610.05591.
  51. Y. Dong, F. Huang, P. Shen, and Z. Zhang, Phys. Rev. C 94, 014003 (2016); arXiv: 1603.08748.
  52. V. Komarov, D. Tsirkov, T. Azaryan, Z. Bagdasarian, S. Dymov, R. Gebel, B. Gou, A. Kacharava, A. Khoukaz, A. Kulikov, V. Kurbatov, B. Lorentz, G. Macharashvili, D. Mchedlishvili, S. Merzliakov, S. Mikirtytchiants, et al., Phys. Rev. C 93, 065206 (2016).
  53. D. Tsirkov, B. Baimurzinova, V. I. Komarov, A. V. Kulikov, A. Kunsafina, V. S. Kurbatov, Z. Kurmanalyiev, and Y. N. Uzikov, Phys. Rev. C 107, 015202 (2023); arXiv: 2207.13575.
  54. Y. A. Troyan, ЭЧАЯ 24, 683 (1993).
  55. A. Baldin, Сообщения ОИЯИ 1-12397 (1979).
  56. D. Blokhintsev, Sov. Phys. JETP 5, 995 (1958).
  57. G. Leksin, Sov. Phys. JETP 5, 371 (1957).
  58. L. Azhgirei, I. Vzorov, V. Zrelov, M. Mescheriakov, B. S. Neganov, and A. F. Shabudin, Sov. Phys. JETP 6, 911 (1958).
  59. A. Efremov, Sov. J. Nucl. Phys. 24, 633 (1976).
  60. E. Lehman, Phys. Lett. B 62, 296 (1976).
  61. L. L. Frankfurt and M. I. Strikman, Phys. Rep. 76, 215 (1981).
  62. A. Efremov, A. Kaidalov, V. Kim, G. Lykasov, and N. Slavin, Sov. J. Nucl. Phys. 47, 868 (1988).
  63. S. Boyarinov et al., Sov. J. Nucl. Phys. 50, 996 (1989).
  64. S. Boyarinov et al., Sov. J. Nucl. Phys. 54, 71 (1991).
  65. A. Efremov and V. Kim, JINR-E2-87-74 (Dubna, 1987).
  66. V. Matveev, R. Muradian, and A. Tavkhelidze, Lett. Nuovo Cimento 7, 719 (1973).
  67. S. J. Brodsky and G. R. Farrar, Phys. Rev. Lett. 31, 1153 (1973).
  68. J. Polchinski and M. J. Strassler, Phys. Rev. Lett. 88, 031601 (2002); hep-th/0109174.
  69. S. J. Brodsky and G. P. Lepage, Phys. Rev. D 24, 2848 (1981).
  70. Y. Uzikov, JETP Lett. 81, 303 (2005); hep-ph/0503185.
  71. L. Frankfurt, M. Sargsian, and M. Strikman, Int. J. Mod. Phys. A 23, 2991 (2008); arXiv: 0806.4412.
  72. O. Hen, G. A. Miller, E. Piasetzky, and L. B. Weinstein, Rev. Mod. Phys. 89, 045002 (2017); arXiv: 1611.09748.
  73. B. Schmookler et al. (CLAS Collab.), Nature 566, 354 (2019); arXiv: 2004.12065.
  74. S. A. Bass, M. Belkacem, M. Bleicher, M. Brandstetter, L. Bravina, C. Ernst, L. Gerland, M. Hofmann, S. Hofmann, J. Konopka, G. Mao, L. Neise, S. Soff, C. Spieles, H. Weber, L. A. Win- ckelmann, et al., Prog. Part. Nucl. Phys. 41, 255 (1998); nucl-th/9803035.
  75. W. Cassing and E. L. Bratkovskaya, Phys. Rep. 308, 65 (1999).
  76. O. Buss, T. Gaitanos, K. Gallmeister, H. van Hees, M. Kaskulov, O. Lalakulich, A. B. Larionov, T. Leitner, J. Weil, and U. Mosel, Phys. Rep. 512, 1 (2012); arXiv: 1106.1344.
  77. P. Chliapnikov et al. (Brussels-CERN-Genoa-Mons-Nijmegen-Serpukhov Collab.), Phys. Lett. B 141, 276 (1984).
  78. A. Belogianni et al. (WA102 Collab.), Phys. Lett. B 548, 129 (2002).
  79. J. Abdallah et al. (DELPHI Collab.), Eur. Phys. J. C 47, 273 (2006).
  80. J. Abdallah et al. (DELPHI Collab.), Eur. Phys. J. C 67, 343 (2010).
  81. L. Van Hove, Ann. Phys. 192, 66 (1989).
  82. S. Barshay, Phys. Lett. 227, 279 (1989).
  83. C.-Y. Wong, JHEP 2008, 165 (2020); arXiv: 2001.04864 [nucl-th].
  84. E. Kokoulina, Act. Phys. Pol. B 35, 295 (2004).

Supplementary files

Supplementary Files
Action
1. JATS XML

Copyright (c) 2023 Pleiades Publishing, Ltd.