Issues

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2007

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August

  

Reviews of topical problems


Shock waves in condensed-state physics

 a,  a,  b
a Joint Institute for High Temperatures, Russian Academy of Sciences, ul. Izhorskaya 13/19, Moscow, 127412, Russian Federation
b Institute of Problems of Chemical Physics, Russian Academy of Sciences, Chernogolovka, Moscow Region, Russian Federation

A scientific session of the Physical Sciences Division of the Russian Academy of Sciences and the Joint Physical Society of the Russian Federation was held in the Conference Hall of the P N Lebedev Physics Institute, Russian Academy of Sciences, on 28 February 2007. The following reports were presented at the session:
1. Fortov V E (Joint Institute for High Temperatures, Russian Academy of Sciences, Moscow) “Intense shock waves and extreme states of matter”.
2. Kanel\’ G I (Joint Institute for High Temperatures, Russian Academy of Sciences, Moscow) “Shock-wave effects in condensed media: metastable states, relaxation processes.”
The review being published is a combined, comprehensive, and supplemented version of the reports presented at this scientific session of the Physical Sciences Division of the Russian Academy of Sciences on 28 February 2007.

We review the latest results of investigations into polymorphous transformations, the deformation, and the fracture of solids in different structural states subjected to shock waves of submicrosecond duration. The problem of attaining the ideal strength of a condensed material is discussed. An anomalous rise in dynamic field stress as the in test temperature increases was discovered for high-purity metals. The effects of superheating in the crystal state and premelting under tension, as well as failure waves in shock-compressed glasses, were also discovered.

Fulltext pdf (732 KB)
Fulltext is also available at DOI: 10.1070/PU2007v050n08ABEH006327
PACS: 52.25.−b, 52.35.Tc, 62.50.+p, 64 (all)
DOI: 10.1070/PU2007v050n08ABEH006327
URL: https://ufn.ru/en/articles/2007/8/a/
000251514700001
2-s2.0-37049014478
2007PhyU...50..771K
Citation: Kanel G I, Fortov V E, Razorenov S V "Shock waves in condensed-state physics" Phys. Usp. 50 771–791 (2007)
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Оригинал: Канель Г И, Фортов В Е, Разоренов С В «Ударные волны в физике конденсированного состояния» УФН 177 809–830 (2007); DOI: 10.3367/UFNr.0177.200708a.0809

References (120) Cited by (187) ↓ Similar articles (20)

  1. Nelasov I V, Manokhin S S et al Journal of Applied Physics 140 (5) (2026)
  2. Sadovskii V M, Sadovskaya O V Comput. Math. And Math. Phys. 66 (6) 1056 (2026)
  3. Krasnikov V S, Yakusheva P A, Mayer A E Computational Materials Science 274 115039 (2026)
  4. Boykov D S, Olkhovskaya O G Math Models Comput Simul 17 (S2) S290 (2025)
  5. Shah S, Hazell P J et al J. Dynamic Behavior Mater. 11 (3) 338 (2025)
  6. Sekar O, Bincy F I M et al ChemistrySelect 10 (41) (2025)
  7. Shah S, Hazell P J et al Journal of Applied Physics 137 (11) (2025)
  8. Sekar O, Irine M B F et al Dalton Trans. 54 (8) 3188 (2025)
  9. Borodin E N, Mayer A E Advanced Structured Materials Vol. Current Developments in Solid Mechanics and Their ApplicationsMechanical Effect of Plastic Flow Instabilities at High Strain Rates223 Chapter 6 (2025) p. 77
  10. Oviya S, Bincy F I M et al International Journal Of Refractory Metals And Hard Materials 132 107262 (2025)
  11. Wan X, Zhang W et al Energy 296 130941 (2024)
  12. Sonachalam A, Sokkalingam R et al Environmental Research 244 117834 (2024)
  13. Komarov P S, Romashevskii S A et al High Temp 62 (5) 616 (2024)
  14. Sweatha L, Aswathppa S et al Journal Of Molecular Structure 1317 139138 (2024)
  15. Shevchenko V Ya, Oryschenko A S, Perevislov S N Glass Phys Chem 50 (4) 341 (2024)
  16. Sokkalingam R, Devaraj R G et al Journal Of Molecular Structure 1318 139215 (2024)
  17. Singla A, Basavaraj K, Ray A Phys. Rev. B 110 (18) (2024)
  18. Sh’?’?ch’?’?’?’? ’E Ya, ’dрыshch’?’?’?’? ’B ’l ’? ’?р Fizika I Himi?n Stekla 50 (1) 3 (2024)
  19. Struleva E V, Komarov P S et al High Temp 61 (4) 496 (2023)
  20. Glezer A M, Sundeev R V et al ’pс’?’?kh’? ф’?’?’?ch’?с’?’?kh ’?’?у’? 193 (01) 33 (2023) [Glezer A M, Sundeev R V et al Phys. Usp. 66 (01) 32 (2023)]
  21. Shevchenko V Ya, Oryshchenko A S et al Glass Phys Chem 49 (S1) S1 (2023)
  22. Ashitkov S I, Struleva E V et al High Temp 61 (5) 727 (2023)
  23. Tipeev A O, Ryltsev R E et al Journal Of Molecular Liquids 387 122606 (2023)
  24. Basharin A Yu, Presnyakov M Yu, Vasiliev A L Carbon 210 118033 (2023)
  25. Ashitkov S I, Komarov P S et al Physics of Fluids 35 (10) (2023)
  26. Sivakumar A, Dhas S S Ju et al Journal Of Molecular Structure 1271 134033 (2023)
  27. Rodionov E S, Pogorelko V V et al Materials 16 (16) 5602 (2023)
  28. ’Bsh’?т’?’?’? ’l ’R, ’lтру’?’?’?’? ’M ’E ’? ’?р Teplofizika Vysokih Temperatur 61 (5) 790 (2023)
  29. ’lтру’?’?’?’? ’M ’E, ’F’?’?’?р’?’? ’z ’l ’? ’?р Teplofizika Vysokih Temperatur 61 (4) 536 (2023)
  30. Schmelzer Jürn W P, Tipeev A O Entropy 24 (8) 1029 (2022)
  31. Sharipov Z A, Batgerel B et al J. Surf. Investig. 16 (4) 576 (2022)
  32. Struleva E V, Komarov P S et al High Temp 60 (5) 727 (2022)
  33. Yakushev V V, Utkin A V et al Phys Mesomech 25 (4) 279 (2022)
  34. Vakhrushev A V, Fedotov A Yu, Lekontsev A T Nauka Teh. 21 (1) 12 (2022)
  35. Mayer P N, Pogorelko V V et al Metals 12 (11) 1878 (2022)
  36. Kanel G I, Garkushin G V et al Journal of Applied Physics 131 (9) (2022)
  37. Shepelev V V, Petrov Yu V et al Optics & Laser Technology 152 108100 (2022)
  38. Singla A, Ray A Phys. Rev. B 105 (6) (2022)
  39. Ashitkov S, Komarov P et al Journal of Applied Physics 132 (17) (2022)
  40. Zhang F-G, Zhao F-Q et al Acta Phys. Sin. 71 (3) 034601 (2022)
  41. Murzov S A, Ashitkov S I et al J. Exp. Theor. Phys. 134 (3) 263 (2022)
  42. Murzov S, Ashitkov S et al Journal of Applied Physics 130 (24) (2021)
  43. Aleksandrov A I, Aleksandrov I A et al Chin J Polym Sci 39 (5) 601 (2021)
  44. Inogamov N A, Romashevskiy S A et al Jetp Lett. 113 (2) 75 (2021)
  45. Wang Q, Ma N et al Additive Manufacturing 48 102469 (2021)
  46. Ge S, Yuan Sh et al Journal of Applied Physics 129 (16) (2021)
  47. Ebel A A, Mayer A E MMPh 13 (2) 53 (2021)
  48. Aswathappa S, Saranraj A et al Zeitschrift für Kristallographie - Crystalline Materials 236 (1-2) 1 (2021)
  49. Kanel G I, Savinykh A S et al J. Exp. Theor. Phys. 132 (3) 438 (2021)
  50. Mayer P N, Mayer A E Computational Materials Science 196 110563 (2021)
  51. Sivakumar A, Jude D S S et al Crystal Growth & Design 21 (3) 1617 (2021)
  52. Khokhlov V A, Ashitkov S I et al J. Phys.: Conf. Ser. 1787 (1) 012022 (2021)
  53. Khishchenko K V, Mayer A E International Journal Of Mechanical Sciences 189 105971 (2021)
  54. Kozhamkulov B, Kadyrakunov K et al Mech Compos Mater 56 (6) 817 (2021)
  55. Malashenko V V Tech. Phys. Lett. 46 (9) 925 (2020)
  56. Struleva E V, Komarov P S, Ashitkov S I High Temp 58 (5) 744 (2020)
  57. Savinykh A S, Kanel G I et al Journal of Applied Physics 128 (2) (2020)
  58. Inogamov N A, Petrov Yu V et al High Temp 58 (4) 632 (2020)
  59. Coakley Ja, Higginbotham A et al Sci. Adv. 6 (51) (2020)
  60. Le a L J, Walley S M Encyclopedia of Continuum Mechanics Chapter 219 (2020) p. 1072
  61. Malashenko V V Phys. Solid State 62 (10) 1886 (2020)
  62. Shcherbakov I P, Vettegren V I, Mamalimov R I Izv., Phys. Solid Earth 56 (5) 623 (2020)
  63. Mowlika V, Sivakumar A et al J Nanostruct Chem 10 (3) 203 (2020)
  64. Sivakumar A, Sahaya Ju D S, Martin B D S A Solid State Sciences 110 106452 (2020)
  65. Kanel’ G I High Temp 58 (4) 550 (2020)
  66. Ageev E I, Andreeva Y M et al Optics & Laser Technology 126 106131 (2020)
  67. Demidov B A, Kazakov E D et al Instrum Exp Tech 63 (3) 370 (2020)
  68. Aswathappa S, Dhas S S Ju et al Zeitschrift für Kristallographie - Crystalline Materials 234 (9) 557 (2019)
  69. Gorbashova M A, Gubskiy K L et al J. Phys.: Conf. Ser. 1238 012025 (2019)
  70. Khokhlov V A, Petrov Yu V et al J. Phys.: Conf. Ser. 1147 012066 (2019)
  71. Oleinik G M, Tkachenko S I et al J. Phys.: Conf. Ser. 1147 012086 (2019)
  72. Malashenko V V Phys. Solid State 61 (10) 1800 (2019)
  73. Le a L J, Walley S M Encyclopedia of Continuum Mechanics Chapter 219-1 (2019) p. 1
  74. Vlasova A M J. Phys.: Conf. Ser. 1385 (1) 012049 (2019)
  75. Baidakov V G, Tipeev A O Phys. Solid State 60 (9) 1853 (2018)
  76. Sivakumar A, Suresh S et al Journal Of Elec Materi 47 (8) 4831 (2018)
  77. Baidakov V G, Tipeev A O High Temp 56 (2) 184 (2018)
  78. Koukouvinis P, Kyriazis N et al PLoS ONE 13 (9) e0204125 (2018)
  79. Kanel’ G I, Garkushin G V et al J. Exp. Theor. Phys. 127 (2) 337 (2018)
  80. Malashenko V V Tech. Phys. Lett. 44 (9) 827 (2018)
  81. Grabovskii E V, Gribov A N et al Phys. Atom. Nuclei 81 (7) 1093 (2018)
  82. Le a L J, Jardine A P International Journal Of Plasticity 102 41 (2018)
  83. Varyukhin V N, Malashenko V V Bull. Russ. Acad. Sci. Phys. 82 (9) 1101 (2018)
  84. Ionin A A, Kudryashov S I, Samokhin A A ’pс’?’?kh’? ф’?’?’?ch’?с’?’?kh ’?’?у’? 187 (2) 159 (2017) [Ionin A A, Kudryashov S I, Samokhin A A Phys.-Usp. 60 (2) 149 (2017)]
  85. Zelepugin S A, Ivanova O V et al J. Phys.: Conf. Ser. 894 012033 (2017)
  86. Kanel G I, Zaretsky E B et al ’pс’?’?kh’? ф’?’?’?ch’?с’?’?kh ’?’?у’? 187 (05) 525 (2017) [Kanel G I, Zaretsky E B et al Phys.-Usp. 60 (5) 490 (2017)]
  87. Farbaniec L, Williams C L et al Materials Science And Engineering: A 707 725 (2017)
  88. Bannikova I A, Zubareva A N et al Phys Mesomech 20 (4) 399 (2017)
  89. Zuev L B Phys. Metals Metallogr. 118 (8) 810 (2017)
  90. Rososhek A, Efimov S et al Physics of Plasmas 24 (12) (2017)
  91. Shcherbakov I P, Vettegren V I et al Phys. Solid State 59 (3) 575 (2017)
  92. Malashenko V V Tech. Phys. 62 (5) 810 (2017)
  93. Krivokorytov M S, Vinokhodov A Yu et al Phys. Rev. E 95 (3) (2017)
  94. Maslov A G, Gerasimov Y V, Plotnikova O P J. Phys.: Conf. Ser. 918 012016 (2017)
  95. Vettegren V I, Kuksenko V S, Shcherbakov I P Izv., Phys. Solid Earth 52 (5) 754 (2016)
  96. Mayer A E J. Phys.: Conf. Ser. 774 012061 (2016)
  97. Pogorelko V V, Mayer A E, Krasnikov V S Applied Surface Science 390 289 (2016)
  98. Gnyusov S F, Rotshtein V P et al Int J Fract 199 (1) 59 (2016)
  99. Fortov V E Springer Series In Materials Science Vol. Extreme States of MatterExtreme States in a Nuclear Explosion216 Chapter 4 (2016) p. 91
  100. Malashenko V V Phys. Solid State 58 (10) 2045 (2016)
  101. Fortov V E Springer Series In Materials Science Vol. Extreme States of MatterHigh-Power Lasers in High-Energy-Density Physics216 Chapter 5 (2016) p. 167
  102. Popova T V, Mayer A E, Khishchenko K V J. Phys.: Conf. Ser. 774 012066 (2016)
  103. Ashitkov S I, Komarov P S et al Jetp Lett. 103 (8) 544 (2016)
  104. Ageev E I, Kudryashov S I et al Applied Physics Letters 108 (8) (2016)
  105. Mayer A E, Ebel A A Journal Of Applied Physics 120 (16) 165903 (2016)
  106. Malashenko V V Tech. Phys. Lett. 42 (10) 1022 (2016)
  107. Ebel A A, Mayer A E J. Phys.: Conf. Ser. 774 012060 (2016)
  108. Ashitkov S I, Komarov P S et al J. Phys.: Conf. Ser. 774 (1) 012097 (2016)
  109. Zelepugin S A, Ivanova O V et al IOP Conf. Ser.: Mater. Sci. Eng. 127 012057 (2016)
  110. Baidakov V G The Journal of Chemical Physics 144 (7) (2016)
  111. Vettegren’ V I, Kuksenko V S et al Phys. Solid State 57 (12) 2458 (2015)
  112. Kanel G I 29th International Symposium on Shock Waves 1 Chapter 8 (2015) p. 59
  113. Malashenko V V Phys. Solid State 57 (12) 2461 (2015)
  114. Zelepugin S A, Yuryeva E V AMM 770 169 (2015)
  115. Palnichenko A V, Shakhrai D V et al Physica C: Superconductivity And Its Applications 512 6 (2015)
  116. Lekanov M V, Mayer A E J. Phys.: Conf. Ser. 653 012044 (2015)
  117. Mayer A E, Mayer P N Jetp Lett. 102 (2) 80 (2015)
  118. Zelepugin S A, Zelepugin A S AMM 756 408 (2015)
  119. Popova T V, Mayer A E, Khishchenko K V J. Phys.: Conf. Ser. 653 012045 (2015)
  120. Ageev E I, Veiko V P et al Jetp Lett. 102 (10) 693 (2015)
  121. Inogamov N A, Zhakhovsky V V et al Appl. Phys. B 119 (3) 413 (2015)
  122. Malygin G A, Ogarkov S L, Andriyash A V Phys. Solid State 57 (1) 79 (2015)
  123. (Optics and Measurement Conference 2014) Vol. Optics and Measurement Conference 2014VISAR interferometer for measuring mass velocity in shock wave experimentsJanaKovačičinov?lTom?l?lV?etD. S.KoshkinK. L.GubskiyA. V.MikhailukA. P.Kuznetsov9442 (2015) p. 94420M
  124. Ivanova O V, Zelepugin S A AMM 770 174 (2015)
  125. Baidakov V G, Tipeev A O The Journal of Chemical Physics 143 (12) (2015)
  126. Zelepugin A S, Zelepugin S A AMM 756 513 (2015)
  127. Abrosimov S A, Bazhulin A P et al J Appl Mech Tech Phy 56 (1) 143 (2015)
  128. Baidakov V G Colloid J 77 (2) 119 (2015)
  129. Kuksin A Yu, Yanilkin A V Mech. Solids 50 (1) 44 (2015)
  130. Mayer A E, Mayer P N, Krasnikov V S Procedia Materials Science 3 1890 (2014)
  131. Razorenov S V, Zaretsky E B, Savinykh A S J. Phys.: Conf. Ser. 500 (11) 112053 (2014)
  132. Palnichenko A V, Sidorov N S et al Physica C: Superconductivity 498 54 (2014)
  133. Borodin E N, Atroshenko S A, Mayer A E Tech. Phys. 59 (8) 1163 (2014)
  134. Ilnitsky D K, Khokhlov V A et al J. Phys.: Conf. Ser. 500 (3) 032021 (2014)
  135. Vettegren V I, Shcherbakov I P et al Phys. Solid State 56 (9) 1828 (2014)
  136. Krasnikov V S, Mayer A E Materials Science And Engineering: A 619 354 (2014)
  137. Malashenko V V Phys. Solid State 56 (8) 1579 (2014)
  138. Vettegren V I, Voronin A V et al Phys. Solid State 56 (2) 317 (2014)
  139. Vettegren V I, Shcherbakov I P et al Phys. Solid State 56 (5) 1018 (2014)
  140. Shtremel’ M A Russ. Metall. 2014 (4) 251 (2014)
  141. Inogamov N A, Petrov Yu V et al J. Opt. Technol. 81 (5) 233 (2014)
  142. Abrosimov S A, Bazhulin A P et al Dokl. Phys. 59 (7) 309 (2014)
  143. Kazakov D N, Kozelkov O E et al Mech. Solids 49 (6) 657 (2014)
  144. Mayer A E Mech. Solids 49 (6) 649 (2014)
  145. Abrosimov S A, Bazhulin A P et al Quantum Electron. 44 (6) 530 (2014)
  146. Malygin G A, Ogarkov S L, Andriyash A V Phys. Solid State 55 (4) 780 (2013)
  147. Malashenko V V, Belykh N V Tech. Phys. 58 (12) 1853 (2013)
  148. Malygin G A, Ogarkov S L, Andriyash A V Phys. Solid State 55 (11) 2280 (2013)
  149. Razorenov S V, Savinykh A S, Zaretsky E B Tech. Phys. 58 (10) 1437 (2013)
  150. Malygin G A, Ogarkov S L, Andriyash A V Phys. Solid State 55 (4) 787 (2013)
  151. Mayer A E, Borodin E N, Mayer P N International Journal Of Plasticity 51 188 (2013)
  152. Ashitkov S I, Komarov P S et al Quantum Electron. 43 (3) 242 (2013)
  153. Abrosimov S A, Bazhulin A P et al Quantum Electron. 43 (3) 246 (2013)
  154. Mayer A E, Khishchenko K V et al Journal of Applied Physics 113 (19) (2013)
  155. Kuksin A Yu, Yanilkin A V Phys. Solid State 55 (5) 1010 (2013)
  156. Garkushin G V, Kanel’ G I, Razorenov S V Phys. Solid State 54 (5) 1079 (2012)
  157. Zaretsky E B, Kanel G I Journal of Applied Physics 112 (5) (2012)
  158. Lyashuk T G, Kolupaev B B International Polymer Science And Technology 39 (12) 31 (2012)
  159. Lyashuk T G, Kolupayev B B Surf. Engin. Appl.Electrochem. 48 (5) 487 (2012)
  160. Krauter K G, Jacobson G F et al Review of Scientific Instruments 82 (4) (2011)
  161. Malashenko V V Phys. Solid State 53 (11) 2321 (2011)
  162. Mayer A E, Krasnikov V S Engineering Fracture Mechanics 78 (6) 1306 (2011)
  163. Lyashuk T G, Kolupaev B B Surf. Engin. Appl.Electrochem. 47 (1) 94 (2011)
  164. Inogamov N A, Zhakhovskii V V et al Jetp Lett. 93 (4) 226 (2011)
  165. Bondarev V N, Tarasevych D V Low Temperature Physics 37 (7) 595 (2011)
  166. Jacques N, Czarnota C et al Iutam Bookseries Vol. IUTAM Symposium on Dynamic Fracture and FragmentationA micromechanical constitutive model for dynamic damage and fracture of ductile materials23 Chapter 13 (2010) p. 159
  167. Jacques N, Czarnota C et al Int J Fract 162 (1-2) 159 (2010)
  168. Kanel’ G I, Bezruchko G S et al High Temp 48 (6) 806 (2010)
  169. Bykovsky N E, Senatsky Yu V Laser Phys. 20 (2) 478 (2010)
  170. Zhigilei L V, Lin Zh et al Springer Series In Materials Science Vol. Laser-Surface Interactions for New Materials ProductionAtomic/Molecular-Level Simulations of Laser??IMaterials Interactions130 Chapter 3 (2010) p. 43
  171. Volkov N B, Fen’ko E L, Yalovets A P Tech. Phys. 55 (10) 1389 (2010)
  172. Zhakhovskii V V, Inogamov N A Jetp Lett. 92 (8) 521 (2010)
  173. Bondarev V N, Tarasevich D V Phys. Solid State 52 (6) 1231 (2010)
  174. Lyashuk T G, Kolupaev B B Surf. Engin. Appl.Electrochem. 46 (4) 367 (2010)
  175. Ashitkov S I, Agranat M B et al Jetp Lett. 92 (8) 516 (2010)
  176. Krasnikov V S, Kuksin A Yu et al Phys. Solid State 52 (7) 1386 (2010)
  177. Agranat M B, Anisimov S I et al Jetp Lett. 91 (9) 471 (2010)
  178. Fortov V E Uspekhi Fizicheskikh Nauk 179 (6) 653 (2009) [Fortov V E Phys.-Usp. 52 (6) 615 (2009)]
  179. Charakhchyan A A, Milyavskii V V, Khishchenko K V High Temp 47 (2) 235 (2009)
  180. Kuksin A Yu, Norman G E et al J. Engin. Thermophys. 18 (3) 197 (2009)
  181. Morozov N F, Shikhobalov L S Dokl. Phys. 53 (10) 529 (2008)
  182. Kuksin A Yu, Stega?elov V V, Yanilkin A V Dokl. Phys. 53 (6) 287 (2008)
  183. Imre A R, Drozd-Rzoska A et al Journal Of Non-Crystalline Solids 354 (35-39) 4157 (2008)
  184. Imre A R, Drozd-Rzoska A et al J. Phys.: Condens. Matter 20 (24) 244104 (2008)
  185. Demazeau Gérard Comptes Rendus. Chimie 12 (9) 933 (2008)
  186. Garkushin G V, Razorenov S V, Kanel G I Tech. Phys. 53 (11) 1441 (2008)
  187. Fortov V E Uspekhi Fizicheskikh Nauk 177 (4) 347 (2007)

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