Выпуски

 / 

1983

 / 

Июнь

  

Обзоры актуальных проблем


Модели уравнения состояния вещества

,  а
а Объединенный институт высоких температур РАН, ул. Ижорская 13/19, Москва, 127412, Российская Федерация

СОДЕРЖАНИЕ
1. Введение
2. Уравнения состояния газов
3. Термодинамика плазмы
4. Квазиклассическая модель вещества
5. Квантовомеханические модели твердого тела
6. Модели жидкого состояния
7. Фазовые переходы
8. Полуэмпирические уравнения состояния
Цитированная литература

Текст pdf (4,1 Мб)
English fulltext is available at DOI: 10.1070/PU1983v026n06ABEH004419
PACS: 64.10.+h, 64.70.−p, 05.70.Ce, 52.25.Kn (все)
DOI: 10.3367/UFNr.0140.198306a.0177
URL: https://ufn.ru/ru/articles/1983/6/a/
Цитата: Бушман А В, Фортов В Е "Модели уравнения состояния вещества" УФН 140 177–232 (1983)
BibTexBibNote ® (generic)BibNote ® (RIS)MedlineRefWorks

English citation: Bushman A V, Fortov V E “Model equations of stateSov. Phys. Usp. 26 465–496 (1983); DOI: 10.1070/PU1983v026n06ABEH004419

Статьи, ссылающиеся на эту (140) ↓ Похожие статьи (20)

  1. Akhmatov Z A, Kunizhev B I et al jour 16 (2) 05 (2026)
  2. Shikler R, Firman N D, Ashkenazy Y Physica B: Condensed Matter 719 417963 (2025)
  3. Kugotova A M, Agnokov A T et al jour 15 (1) 21 (2025)
  4. Boyarskikh K A, Khishchenko K V Bull. Russ. Acad. Sci. Phys. 89 (11) 2145 (2025)
  5. Khishchenko K V, Boyarskikh K A et al Metals 15 (11) 1189 (2025)
  6. Anand R K Proc. Natl. Acad. Sci., India, Sect. A Phys. Sci. 95 (1) 103 (2025)
  7. Paramonov M A, Minakov D V et al Phys. Rev. B 110 (18) (2024)
  8. Kuskov O L, Kronrod E V, Kronrod V A Geochem. Int. 62 (12) 1227 (2024)
  9. Khishchenko K V High Temp 61 (5) 720 (2023)
  10. Khishchenko K V Phys. Wave Phen. 31 (2) 123 (2023)
  11. Anand R K, Singh M K Phys. Scr. 98 (6) 065202 (2023)
  12. Shumikhin A S High Temp 61 (5) 595 (2023)
  13. Khishchenko K V High Temp 61 (3) 440 (2023)
  14. Mazhukin V I, Demin M M et al MathMon 57 84 (2023)
  15. Magomedov R A, Akhmedov É N J Eng Phys Thermophy 96 (4) 1060 (2023)
  16. Petrov G M, Davidson A D AIP Advances 13 (3) (2023)
  17. Poliukhin A S, Dyachkov S A et al Physics of Plasmas 30 (1) (2023)
  18. Shepelev V V J. Appl. Ind. Math. 17 (2) 385 (2023)
  19. Mendonça J T Contributions to Plasma Physics 62 (2) (2022)
  20. Inogamov N A, Perov E A et al Jetp Lett. 115 (2) 71 (2022)
  21. Anand R K Ricerche mat 71 (2) 511 (2022)
  22. Shepelev V V, Petrov Yu V et al Optics & Laser Technology 152 108100 (2022)
  23. İBRAHİMOĞLU Beycan, YİLMAZOGLU Zeki et al Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 37 (2) 1939 (2022)
  24. Inogamov N A, Zhakhovsky V V, Khokhlov V A Jetp Lett. 115 (1) 16 (2022)
  25. Mintsev V B High Temp 60 (S3) S370 (2022)
  26. Petrov Yu V, Inogamov N A et al J. Phys.: Conf. Ser. 1787 (1) 012025 (2021)
  27. Khomkin A L, Shumikhin A S Успехи физических наук 191 (11) 1187 (2021)
  28. Gilev S D Combust Explos Shock Waves 57 (3) 378 (2021)
  29. Kovalev Yu M MMPh 12 (3) 48 (2020)
  30. Gilev S D High Temp 58 (2) 166 (2020)
  31. Kovalev Yu M J Eng Phys Thermophy 93 (1) 223 (2020)
  32. Haghgoo M, Hassanzadeh-Aghdam M K, Ansari R Composites Part A: Applied Science and Manufacturing 130 105735 (2020)
  33. Kovalev Yu M, Kalinin K M JCEM 6 (2) 18 (2019)
  34. Maevskii K K, Kinelovskii S A Tech. Phys. 64 (8) 1090 (2019)
  35. Biryukova M A, Petrov D V et al Combust Explos Shock Waves 55 (4) 418 (2019)
  36. Maevskii K (AIP Conference Proceedings) Vol. 2103 (2019) p. 020009
  37. Orlov N Yu, Kadatskiy M A et al Matter and Radiation at Extremes 4 (5) (2019)
  38. Anisimov S I, Zhakhovsky V V et al J. Exp. Theor. Phys. 129 (4) 757 (2019)
  39. Kovalev Yu M MMPh 10 (2) 57 (2018)
  40. Lomonosov I V J. Phys.: Conf. Ser. 946 012081 (2018)
  41. Kulyamina E Yu, Zitserman V Yu, Fokin L R Tech. Phys. 63 (3) 369 (2018)
  42. Gilev S D Combust Explos Shock Waves 54 (4) 482 (2018)
  43. Mamchuev M O Vestnik of Samara University. Natural Science Series 24 (1) 42 (2018)
  44. Kadatskiy M A, Khishchenko K V Physics of Plasmas 25 (11) (2018)
  45. Khishchenko K V J. Phys.: Conf. Ser. 946 012082 (2018)
  46. Kovalev Yu M J Eng Phys Thermophy 91 (6) 1573 (2018)
  47. Tang W-H, Xu B-B et al Acta Phys. Sin. 66 (3) 030505 (2017)
  48. Rethfeld B, Ivanov D S et al J. Phys. D: Appl. Phys. 50 (19) 193001 (2017)
  49. Fat’yanov O V, Asimow P D Journal of Applied Physics 121 (11) (2017)
  50. Bordzilovskii S A, Karakhanov S M et al Journal of Applied Physics 120 (13) (2016)
  51. Khomkin A L, Shumikhin A S J. Exp. Theor. Phys. 123 (5) 891 (2016)
  52. Khishchenko K V J. Phys.: Conf. Ser. 774 012001 (2016)
  53. Gao X, Chen L et al Physics of Plasmas 23 (9) (2016)
  54. Degtyarev A A, Smirnov E B et al J. Phys.: Conf. Ser. 774 012011 (2016)
  55. Kadatskiy M A, Khishchenko K V J. Phys.: Conf. Ser. 774 012005 (2016)
  56. Lomonosov I V, Gryaznov V K Contrib. Plasma Phys. 56 (3-4) 302 (2016)
  57. Kugotova A M, Tsechoeva A Kh et al J Eng Phys Thermophy 89 (5) 1333 (2016)
  58. Kadatskiy M A, Khishchenko K V J. Phys.: Conf. Ser. 653 012079 (2015)
  59. Badretdinova L Kh, Kostitsyn O V et al Bull. Russ. Acad. Sci. Phys. 79 (1) 15 (2015)
  60. Stegailov V V, Zhilyaev P A Molecular Physics 1 (2015)
  61. Vekilov Yu Kh, Krasil’nikov O M et al Успехи физических наук 184 (9) 967 (2014) [Vekilov Yu Kh, Krasilnikov O M et al Phys.-Usp. 57 (9) 897 (2014)]
  62. Dyachkov S, Levashov P Physics of Plasmas 21 (5) (2014)
  63. Minakov D V, Levashov P R et al Journal of Applied Physics 115 (22) (2014)
  64. Krasilnikov O M, Belov M P et al Computational Materials Science 81 313 (2014)
  65. Kinelovskii S A, Maevskii K K High Temp 52 (6) 821 (2014)
  66. Kinelovskii S A, Maevskii K K J Appl Mech Tech Phy 54 (4) 524 (2013)
  67. Loktionov I K High Temp 50 (6) 708 (2012)
  68. Medvedev A B, Trunin R F Uspekhi Fizicheskikh Nauk 182 (8) 829 (2012)
  69. Golubev A A, Mintsev V B At Energy 112 (2) 147 (2012)
  70. Merzhievskii L A, Voronin M S Combust Explos Shock Waves 48 (2) 226 (2012)
  71. Kinelovskii S A, Maevskii K K Combust Explos Shock Waves 47 (6) 706 (2011)
  72. Singh L P, Singh M, Husain A Astrophys Space Sci 331 (2) 597 (2011)
  73. Fortov V E, Lomonosov I V Shock Waves 20 (1) 53 (2010)
  74. Rekhviashvili S Sh Tech. Phys. Lett. 36 (9) 798 (2010)
  75. Koresheva E R, Aleksandrova I V et al Laser Part. Beams 27 (2) 255 (2009)
  76. Hoffmann D H H, Fortov V E et al Astrophys Space Sci 322 (1-4) 167 (2009)
  77. HOFFMANN D H H, BLAZEVIC A et al Int. J. Mod. Phys. E 18 (02) 381 (2009)
  78. Hoffmann D H H, Fortov V E et al High Energy Density Laboratory Astrophysics 2008 Chapter 29 (2009) p. 167
  79. Gordeev D G, Gudarenko L F et al Combust Explos Shock Waves 44 (2) 177 (2008)
  80. Lescoute E, Hallo L et al Physics of Plasmas 15 (6) (2008)
  81. Varentsov D, Ternovoi V Ya et al Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 577 (1-2) 262 (2007)
  82. Khorev I E, Tolkachev V F, Erokhin G A Cosmic Res 45 (2) 170 (2007)
  83. Lomonosov I V Laser Part. Beams 25 (4) 567 (2007)
  84. RAY A, SRIVASTAVA M K et al Laser Part. Beams 24 (3) 437 (2006)
  85. Zhernokletov M V Material Properties under Intensive Dynamic Loading Shock Wave and High Pressure Phenomena Chapter 4 (2006) p. 147
  86. Lomonosov I V, Tahir N A Nuclear Physics News 16 (1) 29 (2006)
  87. Erokhin G A, Kanel’ G I et al Dokl. Phys. 50 (2) 100 (2005)
  88. Karpenko S V, Savintsev A P, Temrokov A I Dokl. Phys. 50 (9) 438 (2005)
  89. Kopp I Z Applied Mechanics Reviews 58 (3) 206 (2005)
  90. Mazhukin V I, Nossov V V et al J. Phys. D: Appl. Phys. 37 (2) 185 (2004)
  91. Karpenko S V, Temrokov A I Tech. Phys. 49 (11) 1509 (2004)
  92. Kanel G I, Fortov V E, Razorenov S V Shock-Wave Phenomena and the Properties of Condensed Matter Chapter 1 (2004) p. 1
  93. Batani D, Vovchenko V I et al Dokl. Phys. 48 (3) 123 (2003)
  94. Mahdieh M H, Hall T A J. Phys. D: Appl. Phys. 36 (10) 1188 (2003)
  95. Anisimov S I, Luk’yanchuk B S Uspekhi Fizicheskikh Nauk 172 (3) 301 (2002)
  96. Khishchenko K V, Fortov V E, Lomonosov I V International Journal of Thermophysics 23 (1) 211 (2002)
  97. Kanel G I, Asay J R et al International Journal of Impact Engineering 23 (1) 421 (1999)
  98. Batani D, Koenig M et al Plasma Phys. Control. Fusion 41 (1) 93 (1999)
  99. Al’tshuler L V, Trunin R F et al Uspekhi Fizicheskikh Nauk 169 (3) 323 (1999)
  100. Inogamov N A, Anisimov S I, Retfeld B J. Exp. Theor. Phys. 88 (6) 1143 (1999)
  101. Inogamov N A, Petrov Yu V et al Jetp Lett. 69 (4) 310 (1999)
  102. Borovik F N, Romanov G S J Eng Phys Thermophys 72 (6) 1017 (1999)
  103. Fortov V E, Khishchenko K V et al Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 415 (3) 604 (1998)
  104. Kanel G I, Baumung K et al Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 415 (3) 509 (1998)
  105. Sikka S K, Godwal B K, Chidambaram R High-Pressure Shock Compression of Solids III Chapter 1 (1998) p. 1
  106. Godwal B K, Sikka S K, Kaushik T C Laser Part. Beams 15 (3) 353 (1997)
  107. Redmer R Physics Reports 282 (2-3) 35 (1997)
  108. Patel N H, Ranga R M P J Eng Math 30 (6) 683 (1996)
  109. Lomonosov I, Fortov V Computational Mechanics ’95 Chapter 304 (1995) p. 1830
  110. Koenig M, Faral B et al Phys. Rev. Lett. 74 (12) 2260 (1995)
  111. Minguez E, Eliezer S, Falquina R Journal of Quantitative Spectroscopy and Radiative Transfer 51 (1-2) 229 (1994)
  112. Yakub E S Low Temperature Physics 20 (8) 579 (1994)
  113. Batsanov S S Effects of Explosions on Materials Chapter 1 (1994) p. 1
  114. Vogel N J. Phys. D: Appl. Phys. 26 (10) 1655 (1993)
  115. Cauble R, Phillion D W et al Phys. Rev. Lett. 70 (14) 2102 (1993)
  116. Likal’ter A A Успехи физических наук 162 (07) 119 (1992)
  117. Butina T A J Appl Mech Tech Phys 33 (1) 20 (1992)
  118. Eliezer S, Mínguez E Laser Part. Beams 10 (3) 495 (1992)
  119. Nikiforov A F, Novikov V G, Uvarov V B High Pressure Research 1 (5-6) 349 (1989)
  120. Vonsovsky S V, Katsnelson M I Springer Series in Solid-State Sciences Vol. Quantum Solid-State PhysicsIntroduction. General Properties of the Solid State of Matter73 Chapter 1 (1989) p. 1
  121. Zhaoning L, Shoufu P Acta Mech Sinica 5 (4) 361 (1989)
  122. Eliezer Sh NATO ASI Series Vol. The Nuclear Equation of StateHigh Pressure Equation of State in Various Areas of Physics — Overview216a Chapter 38 (1989) p. 497
  123. More R M, Warren K H et al The Physics of Fluids 31 (10) 3059 (1988)
  124. Kraeft W D, Ebeling W et al Annalen der Physik 500 (6) 429 (1988)
  125. Meyer-ter-Vehn J, Zittel W Phys. Rev. B 37 (15) 8674 (1988)
  126. Asay J R, Kerley G I International Journal of Impact Engineering 5 (1-4) 69 (1987)
  127. Arnold R C, Meyer-ter-Vehn J Rep. Prog. Phys. 50 (5) 559 (1987)
  128. Fortov V E, Gryaznov V K Strongly Coupled Plasma Physics Chapter 9 (1987) p. 87
  129. Obukhov V V, Romanov G S et al Journal of Engineering Physics 52 (3) 317 (1987)
  130. Levy A, Barak G, Ashkenazi J Phys. Rev. B 35 (18) 9474 (1987)
  131. Zhitenev S B, Inogamov N A, Konstantinov A B Journal of Engineering Physics 50 (5) 518 (1986)
  132. Zittel W, Meyer-Ter-Vehn J, Kübler J Physica B+C 139-140 364 (1986)
  133. Laughlin R B Phys. Rev. A 33 (1) 510 (1986)
  134. More R M Advances in Atomic and Molecular Physics Vol. 21 (1985) p. 305
  135. Ebeling W, Richert W Physics Letters A 108 (2) 80 (1985)
  136. Kuz’mina L V, Rodionov I D USSR Computational Mathematics and Mathematical Physics 25 (4) 150 (1985)
  137. Ross M Rep. Prog. Phys. 48 (1) 1 (1985)
  138. Ebeling W, Fortov V E et al Experientia Supplementum Vol. Transport Properties of Dense PlasmasReferences47 Chapter 7 (1984) p. 168
  139. Ebeling W, Klimontovich Yu L et al Experientia Supplementum Vol. Transport Properties of Dense PlasmasKinetic Equations and Linear Response Theory for Dense Coulomb Fluids47 Chapter 3 (1984) p. 54
  140. Čelebonović V The Moon and the Planets 29 (2) 185 (1983)

© Успехи физических наук, 1918–2026
Электронная почта: ufn@ufn.ru Телефоны и адреса редакции О журнале Пользовательское соглашение