Issues

 / 

2026

 / 

March

  

Conferences and symposia


Nonlinear and linear adaptive optics for laser beam correction

  a,   a, b
a Russian Federal Nuclear Center - All-Russian Research Institute of Experimental Physics, prosp. Mira 37, Sarov, Nizhny Novgorod region, 607188, Russian Federation
b Sarov Physical and Technical Institute — branch of National Research Nuclear University MEPhI, Dukhova str. 6, Sarov, Nizhny Novgorod Region, 607186, Russian Federation

The review is devoted to the research and applications of nonlinear and linear adaptive optics to improve the quality of high power laser beams, including the conditions of its propagation in optically inhomogeneous media. The application of nonlinear adaptive optics is associated with the phase conjugation (wavefront reversal) at stimulated Brillouin scattering in focused beams. The problems of obtaining the high-quality wavefront self-reversal and achieving the diffraction-limited radiation divergence are considered using the example of a two-pass explosive photodissociation iodine laser created at the dawn of quantum electronics and largely determined the energy horizons of its evolution. Linear adaptive optics is associated with an active effect on the radiation phase using methods based both on phase determination and on optimization algorithms. In the case of multichannel lasers, the problem of coherent beam combination is considered, and in the case of a single-channel laser, wavefront control using deformable mirrors is considered. Features of adaptive phase control in the case of continuous and pulsed radiation are discussed.

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

Keywords: high-power lasers, stimulated Brillouin scattering, adaptive optics, phase combining of laser beams
PACS: 42.55.−f, 42.60.By, 42.65.Es, 42.65.Hw, 42.68.Wt (all)
DOI: 10.3367/UFNe.2025.04.039958
URL: https://ufn.ru/en/articles/2026/3/i/
Citation: Garanin S G, Starikov F A "Nonlinear and linear adaptive optics for laser beam correction" Phys. Usp. 69 (3) (2026)

2nd, April 2025

Оригинал: Гаранин С Г, Стариков Ф А «Нелинейная и линейная адаптивная оптика для коррекции лазерных пучков» УФН 196 303–329 (2026); DOI: 10.3367/UFNr.2025.04.039958

References (309) ↓ Similar articles (20)

  1. Dmitriev V G Nelineinaya Optika i Obrashchenie Volnovogo Fronta (M.: Fizmatlit, 2003)
  2. Garmire E New J. Phys. 19 011003 (2017)
  3. Wolff C et al J. Opt. Soc. Am. B 38 1243 (2021)
  4. Wang Y, Zhang M Sensors 22 6062 (2022)
  5. Merklein M et al Appl. Phys. Rev. 9 041306 (2022)
  6. Zel’dovich B Ya i dr Pis’ma ZhETF 15 160 (1972); Zeldovich B Ya et al JETP Lett. 15 109 (1972)
  7. Zel’dovich B Ya, Pilipetskii N F, Shkunov V V Obrashchenie Volnovogo Fronta (M.: Nauka, 1985); Per. na angl. yaz., Zel’dovich B Ya, Pilipetsky N F, Shkunov V V Principles Of Phase Conjugation (Berlin: Springer-Verlag, 1985)
  8. Bespalov V I, Pasmanik G A Nelineinaya Optika i Adaptivnye Lazernye Sistemy (M.: Nauka, 1986); Per. na angl. yaz., Bespalov V I, Pasmanik G A Nonlinear Optics And Adaptive Laser Systems (Commack, NY: Nova Sci. Publ., 1994)
  9. Ragul’skii V V Obrashchenie Volnovogo Fronta pri Vynuzhdennom Rasseyanii Sveta (M.: Nauka, 1990)
  10. Babcock H W Publ. Astron. Soc. Pacif. 65 229 (1953)
  11. Linnik V P Optika Spektroskopiya 25 401 (1957)
  12. Vorontsov M A, Shmal’gauzen V I Printsipy Adaptivnoi Optiki (M.: Nauka, 1985)
  13. Lukin V P Atmosfernaya Adaptivnaya Optika (Novosibirsk: Nauka, 1986); Per. na angl. yaz., Lukin V P Atmospheric Adaptive Optics (Bellingham, Wash.: SPIE, 1995)
  14. Hardy J W Adaptive Optics For Astronomical Telescopes (New York: Oxford Univ. Press, 1998)
  15. Tyson R K Principles Of Adaptive Optics (Boston: Academic Press, 1998)
  16. Burns S A et al Prog. Retinal Eye Res. 68 1 (2019)
  17. Tyson R K Appl. Opt. 35 3640 (1996)
  18. Kubby J A Adaptive Optics For Biological Imaging (Boca Raton, FL: Taylor and Francis, 2013)
  19. Kudryashov A, Weber H Laser Resonators: Novel Design And Development (Bellingham, WA: SPIE Press, 1999)
  20. Pantel R, Putkhof G Osnovy Kvantovoi Elektroniki (M.: Mir, 1972); Per. s angl. yaz., Pantell R H, Puthoff H E Fundamentals Of Quantum Electronics (New York: Wiley, 1969)
  21. Khanin Ya I Kvantovaya Radiofizika. T. 2 Dinamika Kvantovykh Generatorov (M.: Sovetskoe radio, 1975)
  22. Allen L, Eberli Dzh Opticheskii Rezonans i Dvukhurovnevye Atomy (M.: Mir, 1978); Per. s angl. yaz., Allen L, Eberly J H Optical Resonance And Two-Level Atoms (New York: Wiley, 1975)
  23. Leontovich M Izv. AN SSSR, Ser. Fiz. 8 (1) 16 (1944)
  24. Skalli M O, Zubairi M S Kvantovaya Optika (M.: Fizmatlit, 2003); Per. s angl. yaz., Scully M O, Zubairy M S Quantum Optics (Cambridge: Cambridge Univ. Press, 1997)
  25. Hopf F A, Meystre P, McLaughlin D W Phys. Rev. A 13 777 (1976)
  26. Kryukov P G, Letokhov V S Usp. Fiz. Nauk 99 169 (1969); Kryukov P G, Letokhov V S Sov. Phys. Usp. 12 641 (1970)
  27. Starikov F A et al Proc. SPIE 5197 60 (2003)
  28. Starikov F A i dr Kvantovaya Elektronika 39 825 (2009); Starikov F A et al Quantum Electron. 39 825 (2009)
  29. Gasparyan P D, Starikov F A, Starostin A N Usp. Fiz. Nauk 168 843 (1998); Gasparyan P D, Starikov F A, Starostin A N Phys. Usp. 41 761 (1998)
  30. Bete G, Solpiter E Kvantovaya Mekhanika Atomov s Odnim i Dvumya Elektronami (M.: GIFML, 1960); Per. s angl. yaz., Bethe H A, Salpeter E E Quantum Mechanics Of One- And Two- Electron Atoms (Berlin: Springer, 1957)
  31. Starunov V S, Fabelinskii I L Usp. Fiz. Nauk 98 441 (1969); Starunov V S, Fabelinskii I L Sov. Phys. Usp. 13 428 (1970)
  32. Starikov F A et al Proc. Of The Intern. Conf. On LASERS’99 (Eds V J Corcoran, T A Corcoran) (McLean, VA: STS Press, 2000) p. 482
  33. Starikov F A et al Proc. SPIE 3930 12 (2000)
  34. Bogachev V A, Kochemasov G G, Starikov F A Kvantovaya Elektronika 38 849 (2008); Bogachev V A, Kochemasov G G, Starikov F A Quantum Electron. 38 849 (2008)
  35. Bogachev V A, Maslov N V, Starikov F A Kvantovaya Elektronika 40 341 (2010); Bogachev V A, Maslov N V, Starikov F A Quantum Electron. 40 341 (2010)
  36. Raymer M G, Mostowski J Phys. Rev. A 24 1980 (1981)
  37. Raymer M G et al Phys. Rev. A 32 332 (1985)
  38. Vuks M F Rasseyanie Sveta v Gazakh, Zhidkostyakh i Rastvorakh (L.: Izd-vo Leningrad. un-ta, 1977)
  39. Afshaarvahid S, Munch J J. Nonlin. Opt. Phys. Mater. 10 (1) 1 (2001)
  40. Akinyimika Adewale et al High Power Laser Part. Beams 33 111007 (2021)
  41. Brederlov G, Fill E, Vitte K Moshchnyi Iodnyi Lazer (M.: Energoatomizdat, 1985); Per. s angl. yaz., Brederlow G, Fill E, Witte K J The High-Power Iodine Laser (Heidelberg: Springer, 1983)
  42. Kasper J V V, Pimentel G C Appl. Phys. Lett. 5 231 (1964)
  43. Arzhanov V P i dr Kvantovaya Elektronika 19 135 (1992); Arzhanov V P et al Sov. J. Quantum Electron. 22 118 (1992)
  44. Anan’ev Yu A Usp. Fiz. Nauk 103 705 (1971); Anan’ev Yu A Sov. Phys. Usp. 14 197 (1971)
  45. Anan’ev Yu A Opticheskie Rezonatory i Problema Raskhodimosti Lazernogo Izlucheniya (M.: Nauka, 1979)
  46. Belousova I M i dr Zh. Eksp. Teor. Fiz. 58 1481 (1970); Belousova I M et al Sov. Phys. JETP 31 791 (1970)
  47. Golubev L E i dr Kvantovaya Elektronika Vyp. 6(18, Pod red. N G Basova) (M.: Sovetskoe radio, 1973) p. 23
  48. Zaretskii A I i dr Kvantovaya Elektronika 1 1185 (1974); Zaretskii A I et al Sov. J. Quantum Electron. 4 649 (1974)
  49. Zykov L I i dr Zh. Eksp. Teor. Fiz. 67 902 (1974); Zykov L I et al Sov. Phys. JETP 40 447 (1975)
  50. Zykov L I i dr Kvantovaya Elektronika 2 123 (1975); Zykov L I et al Sov. J. Quantum Electron. 5 71 (1975)
  51. Danilov O B, Novoselov N A, Spiridonov V V Optika Spektroskopiya 39 680 (1975); Danilov O B, Novoselov N A, Spiridonov V V Opt. Spectrosc. 39 382 (1975)
  52. Borovich B L i dr Kvantovaya Elektronika 2 1282 (1975); Borovich B L et al Sov. J. Quantum Electron. 5 695 (1975)
  53. Kirillov G A i dr Kvantovaya Elektronika 4 644 (1977); Kirillov G A et al Sov. J. Quantum Electron. 7 357 (1977)
  54. Zaretskii A I i dr Kvantovaya Elektronika 6 1278 (1979); Zaretskii A I et al Sov. J. Quantum Electron. 9 751 (1979)
  55. Alekhin B V i dr Kvantovaya Elektronika 6 1948 (1979); Alekhin B V et al Sov. J. Quantum Electron. 9 1148 (1979)
  56. Witte K J J. Phys. D 12 9 (1979)
  57. Alekhin B V i dr Kvantovaya Elektronika 7 1516 (1980); Alekhin B V et al Sov. J. Quantum Electron. 10 872 (1980)
  58. Baker H, King T IEEE J. Quantum Electron. 17 1828 (1981)
  59. Nosach O Yu, Ragul’skii V V Optika Spektroskopiya 85 999 (1998); Nosach O Yu, Ragul’skii V V Opt. Spectrosc. 85 918 (1998)
  60. Nosach O Yu i dr Pis’ma ZhETF 16 617 (1972); Nosach O Yu et al JETP Lett. 16 435 (1972)
  61. Wang V, Giuliano C IEEE J. Quantum Electron. 13 895 (1977)
  62. Pilipetskii N F, Popovichev V I, Ragul’skii V V Pis’ma ZhETF 27 619 (1978); Pilipetskii N F, Popovichev V I, Ragul’skii V V JETP Lett. 27 585 (1978)
  63. Dolgopolov Yu V i dr Zh. Eksp. Teor. Fiz. 76 908 (1979); Dolgopolov Yu V et al Sov. Phys. JETP 49 458 (1979)
  64. Bespalov V I (Otv. red.) Obrashchenie Volnovogo Fronta Opticheskogo Izlucheniya v Nelineinykh Sredakh (Gor’kii: IPF AN SSSR, 1979)
  65. Bespalov V I (Otv. red.) Obrashchenie Volnovogo Fronta Opticheskogo Izlucheniya v Nelineinykh Sredakh (Gor’kii: IPF AN SSSR, 1982)
  66. Fisher R A (Ed.) Optical Phase Conjugation (New York: Academic Press, 1983)
  67. Sidorovich V G Zh. Tekh. Fiz. 46 2168 (1976)
  68. Bel’dyugin I M i dr Kvantovaya Elektronika 3 2467 (1976); Bel’dyugin I M et al Sov. J. Quantum Electron. 6 1349 (1976)
  69. Kochemasov G G, Nikolaev V D Kvantovaya Elektronika 4 115 (1977); Kochemasov G G, Nikolaev V D Sov. J. Quantum Electron. 7 60 (1977)
  70. Bespalov V I, Betin A A, Pasmanik G A Izv. Vuzov. Ser. Radiofizika 20 791 (1977); Bespalov V I, Betin A A, Pasmanik G A Radiophys. Quantum Electron. 20 544 (1977)
  71. Zel’dovich B Ya, Shkunov V V Kvantovaya Elektronika 4 2353 (1977); Zel’dovich B Ya, Shkunov V V Sov. J. Quantum Electron. 7 1345 (1977)
  72. Bel’dyugin I M, Zemskov E M Kvantovaya Elektronika 5 2055 (1978); Bel’dyugin I M, Zemskov E M Sov. J. Quantum Electron. 8 1163 (1978)
  73. Kochemasov G G, Nikolaev V D Kvantovaya Elektronika 6 1960 (1979); Kochemasov G G, Nikolaev V D Sov. J. Quantum Electron. 9 1155 (1979)
  74. Betin A A, Pasmanik G A Kvantovaya Elektronika 3 2215 (1976); Betin A A, Pasmanik G A Sov. J. Quantum Electron. 6 1204 (1976)
  75. Blashchuk V N i dr Pis’ma ZhTF 3 211 (1977); Blashchuk V N et al Sov. Tech. Phys. Lett. 3 83 (1977)
  76. Bespalov V I, Betin A A, Pasmanik G A Pis’ma ZhTF 3 215 (1977); Bespalov V I, Betin A A, Pasmanik G A Sov. Tech. Phys. Lett. 3 85 (1977)
  77. Baranova N B, Zel’dovich B Ya, Shkunov V V Kvantovaya Elektronika 5 973 (1978); Baranova N B, Zel’dovich B Ya, Shkunov V V Sov. J. Quantum Electron. 8 559 (1978)
  78. Baranova N B, Zel’dovich B Ya Kvantovaya Elektronika 7 973 (1980); Baranova N B, Zel’dovich B Ya Sov. J. Quantum Electron. 10 555 (1980)
  79. Dolgopolov Yu V i dr Zh. Tekh. Fiz. 1 1764 (1981)
  80. Heuer A, Menzel R Phase Conjugate Laser Optics (Eds A Brignon, J-P Huignard) (New York: John Wiley and Sons, 2004) p. 19
  81. Suni P, Falk J J. Opt. Soc. Am. B 3 1681 (1986)
  82. Miller E J, Skeldon M D, Boyd R W Appl. Opt. 28 92 (1989)
  83. Kir’yanov Yu F i dr Kvantovaya Elektronika 18 588 (1991); Kir’yanov Yu F et al Sov. J. Quantum Electron. 21 533 (1991)
  84. Kir’yanov Yu F i dr Kvantovaya Elektronika 19 684 (1992); Kir’yanov Yu F et al Sov. J. Quantum Electron. 22 634 (1992)
  85. Kir’yanov Yu F i dr Kvantovaya Elektronika 29 132 (1999); Kir’yanov Yu F et al Quantum Electron. 29 970 (1999)
  86. Lehmberg R H Opt. Commun. 43 369 (1982)
  87. Lehmberg R H J. Opt. Soc. Am. 73 558 (1983)
  88. Anikeev I Yu, Zubarev I G, Mikhailov S I Kvantovaya Elektronika 13 142 (1986); Anikeev I Yu, Zubarev I G, Mikhailov S I Sov. J. Quantum Electron 16 88 (1986)
  89. Hu P H, Goldstone J A, Ma S S J. Opt. Soc. Am. B 6 1813 (1989)
  90. Kir’yanov Yu F i dr Kvantovaya Elektronika 18 1454 (1991); Kir’yanov Yu F et al Sov. J. Quantum Electron 21 1341 (1991)
  91. Kummrow A Opt. Commun. 96 185 (1993)
  92. Moore T R, Boyd R W J. Non. Opt. Phys. Mater. 5 387 (1996)
  93. Moore T R, Fischer G L, Boyd R W J. Mod. Opt. 45 735 (1998)
  94. Vlad V I, Babin V, Mocofanescu A J. Optoelectron. Adv. Mater. 4 581 (2002)
  95. Mak A A i dr Lazery na Neodimovom Stekle (M.: Nauka, 1990)
  96. Valley G IEEE J. Quantum Electron. 22 704 (1986)
  97. Gaeta A L, Boyd R W Phys. Rev. A 44 3205 (1991)
  98. Damzen M, Hutchinson H IEEE J. Quantum Electron. 19 7 (1983)
  99. Dianov E M et al Opt. Quantum Electron. 21 381 (1989)
  100. Boyd R W, Rzaewski K, Narum P Phys. Rev. A 42 5514 (1990)
  101. Chu P, Kanefsky M, Falk J J. Appl. Phys. 71 4653 (1992)
  102. Afshaarvahid S, Devrelis V, Munch J Phys. Rev. A 57 3961 (1998)
  103. Bobrov S T i dr Optika Spektroskopiya 62 402 (1987)
  104. Gratsianov K V i dr Optika Spektroskopiya 68 617 (1990)
  105. Bobrov C T, Greisukh G I, Turkevich Yu G Optika Difraktsionnykh Elementov i Sistem (L.: Mashinostroenie, 1986)
  106. Kulikov S M et al Proc. SPIE 1628 90 (1992)
  107. Dolgopolov Yu V et al Proc. SPIE 1980 23 (1992)
  108. Dolgopolov Yu V i dr Izv. AN SSSR, Ser. Fiz. 58 35 (1994)
  109. Kochemasov G G, Starikov F A Opt. Commun. 17 161 (1999)
  110. Dolgopolov Yu V et al Proc. Of The Intern. Conf. On LASERS’99 (Eds V J Corcoran, T A Corcoran) (McLean, VA: STS Press, 2000) p. 466
  111. Starikov F A et al Proc. SPIE 4353 202 (2001)
  112. Starikov F A i dr Izv. RAN. Ser. Fiz. 65 935 (2001)
  113. Dolgopolov Yu et al Technical Digest of CLEO/Europe 2003 (Europhysics Conf. Abstracts, Vol. 27E), Paper CF5-4-FRI
  114. Starikov F, Kochemasov G Adaptive Optics For Industry And Medicine. Proc. Of The 4th Intern. Workshop, Munster, Germany, Oct. 19-24, 2003 (Springer Proc. In Physics, Vol. 102, Ed. U Wittrock) (Berlin: Springer, 2005) p. 291
  115. Bogachev V A i dr Kvantovaya Elektronika 42 531 (2012); Bogachev V A et al Quantum Electron. 42 531 (2012)
  116. Eroshenko V A i dr Voprosy Atomnoi Nauki Tekhniki. Ser. Teor. Priklad. Fizika (3) 25 (1990)
  117. Starikov F A et al Proc. SPIE 5147 60 (2003)
  118. Starikov F A et al Proc. SPIE 5479 81 (2004)
  119. Kulikov S M et al Laser Part. Beams 17 765 (1999)
  120. Kong H J et al Opt. Rev. 4 277 (1997)
  121. Omatsu T et al Laser Part. Beams 30 117 (2012)
  122. Garanin S G i dr Kvantovaya Elektronika 52 289 (2022); GaraninS G et al Quantum Electron. 52 289 (2022)
  123. Bogachev V A, Nemtseva A V, Starikov F A Zh. Tekh. Fiz. 94 827 (2024); Bogachev V A, Nemtseva A V, Starikov F A Tech. Phys. 69 769 (2024)
  124. Oraevskii A N Trudy FIAN 187 3 (1988)
  125. Starikov F A, Kochemasov G G Opt. Commun. 193 207 (2001)
  126. Starikov F A, Kochemasov G G Proc. SPIE 4403 217 (2001)
  127. Starikov F A Nelineinye Volny 2006 (Pod red. A V Gaponova-Grekhova, V I Nekorkina) (N. Novgorod: IPF RAN, 2007) p. 206
  128. Starikov F A et al Proc. SPIE 7009 70090E (2008)
  129. Kopalkin A V i dr Kvantovaya Elektronika 41 1023 (2011); Kopalkin A V et al Quantum Electron. 41 1023 (2011)
  130. Aksenov V P et al Proc. SPIE 5894 5894O7 (2005)
  131. Atuchin V V et al Proc. SPIE 6054 188 (2006)
  132. Bagdasarov V Kh i dr Kvantovaya Elektronika 39 785 (2009); Bagdasarov V Kh et al Quantum Electron. 39 785 (2009)
  133. Fan T Y IEEE J. Sel. Top. Quantum Electron. 11 567 (2005)
  134. Bruesselbach H et al J. Opt. Soc. Am. B 22 347 (2005)
  135. Augst S J et al Optics Lett. 29 474 (2004)
  136. Pyrkov Yu N, Trikshev A I, Tsvetkov V B Kvantovaya Elektronika 42 790 (2012); Pyrkov Yu N, Trikshev A I, Tsvetkov V B Quantum Electron. 42 790 (2012)
  137. Bellanger C et al Opt. Lett. 33 2937 (2008)
  138. Peng W et al Micromachines 12 1426 (2021)
  139. Brauch U et al Appl. Phys. B 128 58 (2022)
  140. Rastogi V, Chaurasia S Photonics 11 942 (2024)
  141. Kurkov A S, Dianov E M Kvantovaya Elektronika 34 881 (2004); Kurkov A S, Dianov E M Quantum Electron. 34 881 (2004)
  142. Zhou P et al Sci. China Technol. Sci. 60 1784 (2017)
  143. Zervas M N, Codemard C A IEEE J. Select. Top. Quantum Electron. 20 219 (2014)
  144. Dawson J W et al Opt. Express 16 13240 (2008)
  145. Zhu J et al Opt. Express 19 18645 (2011)
  146. Shi W et al Appl. Opt. 53 6554 (2014)
  147. Huang B, Wang J, Shao X Photonics 10 282 (2023)
  148. Huang R K et al IEEE Photon. Technol. Lett. 19 209 (2007)
  149. Wirth C et al Opt. Express 17 1178 (2009)
  150. Schmidt O et al Opt. Lett. 34 1567 (2009)
  151. Kovalev V I, Harrison R G Opt. Lett. 30 1375 (2005)
  152. Grime B W, Roh W B, Alley T G Opt. Lett. 30 2415 (2005)
  153. Fan T Y IEEE J. Select. Top. Quantum Electron. 11 567 (2005)
  154. Brignon A (Ed.) Coherent Laser Beam Combining (New York: Wiley-VCH Verlag, 2013)
  155. Protz R et al Proc. SPIE 8547 854708 (2013)
  156. Likhanskii V V, Napartovich A P Usp. Fiz. Nauk 160 (3) 101 (1990); Likhanskii V V, Napartovich A P Sov. Phys. Usp. 33 228 (1990)
  157. Vysotskii D V, Napartovich A P Kvantovaya Elektronika 49 989 (2019); Vysotsky D V, Napartovich A P Quantum Electron. 49 989 (2019)
  158. Anderegg J et al Proc. SPIE 6102 61020U (2006)
  159. Yu C et al Opt. Lett. 36 2686 (2011)
  160. Redmond S et al Opt. Lett. 37 2832 (2012)
  161. Thielen P, Ho J, Burchman D Opt. Lett. 37 3741 (2012)
  162. Flores A et al Opt. Eng. 55 096101 (2016)
  163. Yu C X et al Elect. Lett. 42 1024 (2006)
  164. Kansky J E et al Proc. SPIE 6306 63060G (2006)
  165. Goodno G D et al Opt. Lett. 31 1247 (2006)
  166. Marmo J et al Proc. SPIE 7195 719507 (2009)
  167. Vorontsov M A, Kolosov V J. Opt. Soc. Am. A 22 126 (2005)
  168. Vorontsov M A, Weyrauch T Appl. Opt. 55 9950 (2016)
  169. Cauwenberghs G Advances In Neural Information Processing Systems Vol. 5 (Eds S Hanson, J Cowan, C Giles) (San Mateo, CA: Morgan Kaufmann Publ., 1993) p. 244
  170. Cauwenberghs G Analog Integrated Circuits Signal Process. 13 195 (1997)
  171. Vorontsov M A, Carhart G W, Ricklin J C Opt. Lett. 22 907 (1997)
  172. Vorontsov M A, Sivokon V P J. Opt. Soc. Am. A 15 2745 (1998)
  173. Bruesselbach H et al Conf. On Lasers And Electro-Optics, CLEO, Baltimore, MD, USA, 22-27 May 2005 Vol. 1 (Piscataway, NJ: IEEE, 2005) p. 746
  174. Weyrauch T et al Opt. Lett. 36 4455 (2011)
  175. Volkov V A i dr Kvantovaya Elektronika 45 1125 (2015); Volkov V A et al Quantum Electron. 45 1125 (2015)
  176. Fried D L J. Opt. Soc. Am. 56 1380 (1966)
  177. Weyrauch T et al Opt. Lett. 41 840 (2016)
  178. Andrews L C, Phillips R L Laser Beam Propagation Through Random Media 2nd ed. (Bellingham, WA: SPIE Press, 1998)
  179. Volkov V A i dr Kvantovaya Elektronika 43 852 (2013); Volkov V A et al Quantum Electron. 43 852 (2013)
  180. Volkov M V i dr Kvantovaya Elektronika 44 1039 (2014); Volkov M V et al Quantum Electron. 44 1039 (2014)
  181. Volkov M V i dr Kvantovaya Elektronika 50 694 (2020); Volkov M V et al Quantum Electron. 50 694 (2020)
  182. Freeman R H, Pearson J E Appl. Opt. 21 580 (1982)
  183. Nikolaev P V, Smirnov A V Optiko-mekhanicheskaya Promyshlennost’ (11) 47 (1987)
  184. Taranenko V G, Shanin O I Adaptivnaya Optika (M.: Radio i svyaz’, 1990)
  185. Ryabova N V, Zakharenkov V F Optiko-mekhanicheskaya Promyshlennost’ (6) 5 (1992)
  186. Born M, Vol’f E Osnovy Optiki (M.: Nauka, 1973); Per. s angl. yaz., Born M, Wolf E Principles Of Optics (Oxford: Pergamon Press, 1969)
  187. Harvey J E, Callahan G M Proc. SPIE 141 50 (1978)
  188. Sato T, Ikeda O, Ueda Y Appl. Opt. 17 3945 (1978)
  189. Yellin M Proc. SPIE 75 97 (1976)
  190. Vdovin G V, Sarro P M Appl. Opt. 34 2968 (1995)
  191. Feinleib J, Lipson S G, Cone P E Appl. Phys. Lett. 25 311 (1974)
  192. Naumov A F Golograficheskie Metody v Nauke i Tekhnike (L.: LFTI, 1985) p. 216
  193. Vasil’ev A A, Kompanets I N, Parfenov A V Kvantovaya Elektronika 10 1079 (1983); Vasil’ev A A, Kompanets I N, Parfenov A V Sov. J. Quantum Electron. 13 689 (1983)
  194. Naumov A F et al Opt. Lett. 23 992 (1998)
  195. Restaino S R et al Opt. Express 6 2 (2000)
  196. Bifano T G et al IEEE J. Select. Top. Quantum Electron. 5 83 (1999)
  197. Bifano T Nature Photon. 5 21 (2011)
  198. Sun J, Xie H Int. J. Opt. 2011 825629 (2011)
  199. Holmström S T S, Baran U, Urey H J. Microelectromech. Syst. 23 259 (2014)
  200. Wang D, Watkins C, Xie H Micromachines 11 456 (2020)
  201. Polster H D et al Appl. Opt. 8 521 (1969)
  202. Henderson W D, Sunn S V Proc. SPIE 179 51 (1979)
  203. Hardy J W National Telecommunications Conf., New Orleans, LA, December 1-3, 1975, Conf. Record Vol. 1 (New York: IEEE, 1975) p. 6
  204. Andrianova I I i dr Optiko-mekhanicheskaya Promyshlennost’ (10) 30 (1982)
  205. Taranenko V G Izv. Vuzov. Fizika (11) 106 (1985); Taranenko V G Sov. Phys. J. 28 938 (1985)
  206. Everson J H at al. Proc. SPIE 228 34 (1980)
  207. Freeman R H, Garcia H R Appl. Opt. 21 589 (1982)
  208. Albertinetti N P, Aldrich R E, Everson J H Proc. SPIE 179 28 (1979)
  209. Pirson Dzh, Khansen S Adaptivnaya Optika (M.: Mir, 1980) p. 203; Per. s angl. yaz., Pearson J E, Hansen S J. Opt. Soc. Am. 67 325 (1977)
  210. Garcia H R, Brooks L D Proc. SPIE 141 47 (1978)
  211. Sato T et al Appl. Opt. 19 1430 (1980)
  212. Sato T et al Appl. Opt. 20 343 (1981)
  213. Fuschetto A Proc. SPIE 179 17 (1979)
  214. Andronov V P, Kirchin G V, Libik L P Optiko-mekhanicheskaya Promyshlennost’ (5) 17 (1982)
  215. Adelman N T Appl. Opt. 16 3075 (1977)
  216. Kokorowski S A J. Opt. Soc. Am. 69 181 (1979)
  217. Steinhaus E, Lipson S G J. Opt. Soc. Am. 69 478 (1979)
  218. Vorontsov M A, Kudryashov A V, Shmal’gauzen V I Izv. Vuzov. Fizika (8) 11 (1987); Vorontsov M A, Kudryashov A V, Shmal’gauzen V I Sov. Phys. J. 30 650 (1987)
  219. Kudryashov A V, Shmalhausen V I Opt. Eng. 35 3064 (1996)
  220. Cherezova T Yu, Kaptsov L N, Kudryashov A V Appl. Opt. 35 2554 (1996)
  221. Kudryashov A V, Samarkin V V Opt. Commun. 118 317 (1995)
  222. Cherezova T Yu et al Appl. Opt. 40 33 (2001)
  223. Baker K L et al Opt. Lett. 29 47 (2004)
  224. Craven-Bartle T V, Dorn R J, Beletic J W Proc. SPIE 4007 444 (2000)
  225. Ragazzoni R J. Mod. Opt. 43 289 (1996)
  226. Ragazzoni R et al Proc. SPIE 4007 423 (2000)
  227. Hartmann J Z. Instrumentenkunde 24 1 (1904); Hartmann J Z. Instrumentenkunde 24 33 (1904); Hartmann J Z. Instrumentenkunde 24 97 (1904)
  228. Shack R B, Platt B C J. Opt. Soc. Am. 61 656 (1971)
  229. Fried D L Radio Sci. 10 71 (1975)
  230. Sarazin M, Rodier F Astron. Astrophys. 227 294 (1990)
  231. Tokovinin A Publ. Astron. Soc. Pacif. 114 1156 (2002)
  232. Antoshkin L V i dr Optika Atmosfery Okeana 21 75 (2008)
  233. Kovadlo P G i dr Izv. Vuzov. Fizika 63 (11) 109 (2020); Kovadlo P G et al Russ. Phys. J. 63 1952 (2021)
  234. Potanin S A i dr Astrofiz. Byull. 77 241 (2022); Potanin S A et al Astrophys. Bull. 77 214 (2022)
  235. Bogachev V A i dr Pis’ma ZhETF 120 598 (2024); Bogachev V A et al JETP Lett. 120 573 (2024)
  236. Kudryashov A et al Appl. Opt. 54 4352 (2015)
  237. Starikov F A et al Opt. Lett. 32 2291 (2007)
  238. Starikov F A et al Opt. Lett. 34 2264 (2009)
  239. Garanin S G, Starikov F A, Malakhov Yu I Adaptive Optics Progress (Ed. R K Tyson) (Rijeka: InTech, 2013) p. 147
  240. Greenwood D P J. Opt. Soc. Am. 67 390 (1977)
  241. Fried D L J. Opt. Soc. Am. A 7 1224 (1990)
  242. Karr T J Appl. Opt. 30 363 (1991)
  243. Volkov M V i dr Optika Atmosfery Okeana 34 547 (2021); Volkov M V et al Atmos. Ocean. Opt. 35 250 (2022)
  244. Kudryashov A V et al Proc. SPIE 10772 250 (2018)
  245. Surendran A et al J. Astron. Telescop. Instrum. Syst. 4 039001 (2018)
  246. Truong T N et al Proc. SPIE 715 995 (2008)
  247. Guyon O et al Proc. SPIE 10703 469 (2018)
  248. Rukosuev A L i dr Kvantovaya Elektronika 50 707 (2020); Rukosuev A L et al Quantum Electron. 50 707 (2020)
  249. Belousov V N i dr Kvantovaya Elektronika 51 992 (2021); Belousov V N et al Quantum Electron. 51 992 (2021)
  250. Ohland J B et al High Power Laser Sci. Eng. 13 e29 (2025)
  251. Bogachev V A i dr Optika Atmosfery i Okeana. Fizika Atmosfery. XXX Mezhdunarodnyi Simpozium, Sankt-Peterburg, 01-05 Iyulya 2024 (Tomsk: Izd-vo IOA SO RAN, 2024)
  252. Vorontsov M A et al J. Opt. Soc. Am. A 13 1456 (1996)
  253. Vorontsov M A et al Appl. Opt. 36 3319 (1997)
  254. Sivokon V P, Vorontsov M A J. Opt. Soc. Am. A 15 234 (1998)
  255. Vorontsov M A J. Opt. Soc. Am. A 19 356 (2002)
  256. Vorontsov M A et al J. Opt. Soc. Am. A 17 1440 (2000)
  257. Weyrauch T, Vorontsov M A Appl. Opt. 44 6388 (2005)
  258. Garanin S G i dr Avtometriya 48 (2) 30 (2012); Per. na angl. yaz., Garanin S G et al Optoelectron. Instrum.Process. 48 134 (2012)
  259. Garanin S et al Advances In Science And Technology Vol. 82 (Baech, Switzerland: Trans Tech Publ., 2013) p. 75
  260. Garanin S G i dr Optika Atmosfery Okeana 26 427 (2013)
  261. Khokhlov S V i dr Trudy RFYaTs-VNIIEF Vyp. 19, Ch. 2 (Sarov: RFYaTs-VNIIEF, 2014) p. 380
  262. Bogachev V A i dr Optika Atmosfery Okeana 29 934 (2016); Bogachev V A et al Atmos. Ocean. Opt. 30 191 (2017)
  263. Garanin S G i dr Dokl. RAN. Fizika Tekhnicheskie Nauki (2025), v pechati
  264. Wizinowich P Contemp. Phys. 56 432 (2015)
  265. D’Orgeville C, Fetzer G J Proc. SPIE 9909 99090R (2016)
  266. Hippler S J. Astron. Instrum. 8 1950001 (2019)
  267. Guo Y et al Opto-Electron. Adv. 5 200082 (2022)
  268. Rao C et al PhotoniX 5 16 (2024)
  269. Miller G H, Moses E I, Wuest R C Opt. Eng. 43 2841 (2004)
  270. Dunne M Nature Phys. 2 2 (2006)
  271. Belkov S A, Garanin S G, Shagalkin Yu V Proc. of the Intern. Conf. on Coherent and Nonlinear Optics and Conf. on Lasers, Applications, and Technologies, ICONO/LAT 2013, Moscow, Russia, 2013 p. 94
  272. Garanin S G i dr Vestnik RAN 91 435 (2021); Garanin S G et al Herald Russ. Acad. Sci. 91 250 (2021)
  273. Yang Z P et al Opto-Electron Eng. 45 180049 (2018)
  274. Andre M L Proc. SPIE 3047 38 (1997)
  275. Wattellier B et al J. Opt. Soc. Am. B 20 1632 (2003)
  276. Zacharias R A et al Opt. Eng. 43 2873 (2004)
  277. Danson C N et al Nucl. Fusion 239 (2004)
  278. Bokalo S Yu i dr Kvantovaya Elektronika 37 691 (2007); Bokalo S Yu et al Quantum Electron. 37 691 (2007)
  279. Zou J P et al Appl. Opt. 47 704 (2008)
  280. Sueda K et al Plasma Phys. Fusion Technol. Laser Soc. Jpn. 37 45 (2009)
  281. Grosset-Grange C et al Proc. SPIE 6584 658403 (2007)
  282. Sutton S B et al Proc. SPIE 3492 665 (1999)
  283. Bel’kov S A i dr Kvantovaya Elektronika 53 873 (2023); Per. na angl. yaz., Belkov S A et al Bull. Lebedev Phys. Inst. 51 S165 (2024)
  284. Bel’kov S A i dr Kvantovaya Elektronika 55 1 (2025); Per. na angl. yaz., Belkov S A et al Bull. Lebedev Phys. Inst. 52 S377 (2025)
  285. Major Z et al High Power Laser Sci. Eng. 12 e39 (2024)
  286. Zou J-P, Wattellier B Topics In Adaptive Optics (Ed. R Tyson) (London: InTech, 2012) p. 95
  287. Druon F et al Opt. Lett. 23 1043 (1998)
  288. Baumhacker H et al Opt. Lett. 27 1570 (2002)
  289. Akahane Y et al Rev. Sci. Instrum. 77 023102 (2006)
  290. Fourmaux S et al Opt. Express 16 11987 (2008)
  291. Korzhimanov A V i dr Usp. Fiz. Nauk 181 9 (2011); Korzhimanov A V et al Phys. Usp. 54 9 (2011)
  292. Chu Y et al Opt. Lett. 40 5011 (2015)
  293. Sung J H et al Opt. Lett. 42 2058 (2017)
  294. Danson C N et al High Power Laser Sci. Eng. 7 e54 (2019)
  295. Li Y et al High Power Laser Sci. Eng. 13 e12 (2025)
  296. Di Piazza A et al Rev. Mod. Phys. 84 1177 (2012)
  297. Li Z, Leng Y, Li R Laser Photon. Rev. 2100705 (2022)
  298. Khazanov E A i dr Kvantovaya Elektronika 53 95 (2023); Per. na angl. yaz., Kostyukov I Yu et al Bull. Lebedev Phys. Inst. 50 S635 (2023)
  299. Khazanov E et al High Power Laser Sci. Eng. 11 e78 (2023)
  300. Chvykov V Encyclopedia 4 1236 (2024)
  301. Wattellier B et al Rev. Sci. Instrum. 75 5186 (2004)
  302. Solov’ev A A i dr Kvantovaya Elektronika 50 1115 (2020); Soloviev A A et al Quantum Electron. 50 1115 (2020)
  303. Samarkin V et al Appl. Sci. 12 1144 (2022)
  304. Yoon J W et al Optica 8 630 (2021)
  305. Habara H et al Opt. Lett. 35 1783 (2010)
  306. Samarkin V et al High Power Laser Sci. Eng. 4 e4 (2016)
  307. Kotov A V i dr Kvantovaya Elektronika 51 593 (2021); Kotov A V et al Quantum Electron. 51 593 (2021)
  308. Soloviev A et al Opt. Express 30 40584 (2022)
  309. Martyanov M et al J. Opt. Soc. Am. B 39 1936 (2022)

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