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1997

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April

  

Reviews of topical problems


The electron-phonon interaction and the physical properties of metals

 a,  a,  b
a Lebedev Physical Institute, Russian Academy of Sciences, Leninsky prosp. 53, Moscow, 119991, Russian Federation
b Max-Planck Institut für Festkörperforschung, Stuttgart, Germany

Theoretical work dealing with the electron-phonon interaction (EPI) and its effects on the physical properties of metals is reviewed. The many-body approach and that using Landau’s Fermi-liquid theory are briefly described and their adequacy is demonstrated for low values of the adiabaticity parameter (ωDF)(1/2), where ωD is the characteristic photon frequency, and εF is the Fermi energy. Density functional theory is applied to EPI calculations are outlined, and for a number of simple and transition metals, the results of calculations for EPI spectral densities and EPI-dependent physical properties are presented. The potentialities and the range of validity for EPI applications of the density functional method are discussed.

Fulltext pdf (399 KB)
Fulltext is also available at DOI: 10.1070/PU1997v040n04ABEH000226
PACS: 63.20.Kr, 71.10.+x, 71.20.Cf, 71.38.+i
DOI: 10.1070/PU1997v040n04ABEH000226
URL: https://ufn.ru/en/articles/1997/4/a/
A1997XB47600001
Citation: Maksimov E G, Savrasov D Yu, Savrasov S Yu "The electron-phonon interaction and the physical properties of metals" Phys. Usp. 40 337–358 (1997)
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Оригинал: Максимов Е Г, Саврасов Д Ю, Саврасов С Ю «Электрон-фононное взаимодействие и физические свойства металлов» УФН 167 353–376 (1997); DOI: 10.3367/UFNr.0167.199704a.0353

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  1. Volkov N B, Lipchak A I Condensed Matter 8 70 (2023)
  2. Bu X, Wang Sh Phys. Chem. Chem. Phys. 22 4010 (2020)
  3. Veysman M E, Röpke G, Reinholz H J. Phys.: Conf. Ser. 1147 012071 (2019)
  4. Xue S, Zhang T et al Phys. Rev. B 100 (19) (2019)
  5. Veysman M, Röpke G, Reinholz H Particles 2 242 (2019)
  6. Semenok D V, Kvashnin A G et al J. Phys. Chem. Lett. 9 1920 (2018)
  7. Kruglov I A, Kvashnin A G et al Sci. Adv. 4 (10) (2018)
  8. Veysman M E, Röpke G, Reinholz H J. Phys.: Conf. Ser. 946 012012 (2018)
  9. Kvashnin A G, Semenok D V et al ACS Appl. Mater. Interfaces 10 43809 (2018)
  10. Wagenknecht D, Carva K, Turek I IEEE Trans. Magn. 53 1 (2017)
  11. Volkov N B, Chingina E A J. Phys.: Conf. Ser. 830 012036 (2017)
  12. Jain A, McGaughey A J H Phys. Rev. B 93 (8) (2016)
  13. Shneyder E I, Spitaler J et al Journal Of Alloys And Compounds 648 258 (2015)
  14. Polukhin V A, Kurbanova E D Russ. J. Phys. Chem. 89 531 (2015)
  15. Galashev A E Tech. Phys. 59 467 (2014)
  16. Glasbrenner J K, Pujari B S, Belashchenko K D Phys. Rev. B 89 (17) (2014)
  17. Gabovich A M, Kuznetsov V I Eur. J. Phys. 34 371 (2013)
  18. Fauster T, Echenique P M, Chulkov E V Surface and Interface Science 1 (2013) p. 637
  19. Kudrnovský J, Drchal V et al Phys. Rev. B 86 (14) (2012)
  20. Gamaly E G Physics Reports 508 91 (2011)
  21. Gabovich A M, Voitenko A I et al Advances In Condensed Matter Physics 2010 1 (2010)
  22. YURIN I M Int. J. Mod. Phys. B 24 5847 (2010)
  23. Eremeev S V, Tsirkin S S, Chulkov E V J. Exp. Theor. Phys. 110 788 (2010)
  24. Devreese J T, Alexandrov A S Rep. Prog. Phys. 72 066501 (2009)
  25. Maksimov E G, Wang S Q et al Supercond. Sci. Technol. 22 075004 (2009)
  26. Singh D, Pandey D K et al Cryogenics 49 12 (2009)
  27. Maksimov E G, Wang S Q et al Jetp Lett. 87 437 (2008)
  28. Berndt R, Kröger J Handbook Of Surface Science Vol. DynamicsChapter 11 Dynamics of Electronic States at Metal Surfaces3 (2008) p. 525
  29. Maksimov E G Uspekhi Fizicheskikh Nauk 178 175 (2008)
  30. Maksimov E G, Ebert S V et al J. Exp. Theor. Phys. 105 642 (2007)
  31. Maksimov E G, Dolgov O V Uspekhi Fizicheskikh Nauk 177 983 (2007)
  32. Kulić M L J Supercond 19 213 (2007)
  33. Sklyadneva I Yu, Leonardo A et al J. Phys.: Condens. Matter 18 7923 (2006)
  34. Efremov G F, Mareeva O V, Vorobiev D A Radiophys Quantum Electron 48 222 (2005)
  35. Kulić M L, Dolgov O V Physica Status Solidi (b) 242 151 (2005)
  36. Maksimov E G, Magnitskaya M V, Fortov V E Uspekhi Fizicheskikh Nauk 175 793 (2005)
  37. Zheng X H, Walmsley D G Phys. Rev. B 71 (13) (2005)
  38. Uteza O P, Gamaly E G et al Phys. Rev. B 70 (5) (2004)
  39. Maksimov E G, Magnitskaya M V et al Jetp Lett. 80 548 (2004)
  40. Echenique P M, Berndt R et al Surface Science Reports 52 219 (2004)
  41. Demler E, Hanke W, Zhang Sh-Ch Rev. Mod. Phys. 76 909 (2004)
  42. Eiguren A, Hellsing B et al Phys. Rev. B 67 (23) (2003)
  43. Amelin I I Jetp Lett. 77 132 (2003)
  44. Gamaly E G, Rode A V et al Applied Surface Science 197-198 730 (2002)
  45. Brinkman A, Golubov A A et al Phys. Rev. B 65 (18) (2002)
  46. Gabovich A M, Voitenko A I, Ausloos M Physics Reports 367 583 (2002)
  47. Gordyunin S A, Belemouk A M et al J. Exp. Theor. Phys. 94 135 (2002)
  48. Gabovich A M, Voitenko A I et al Supercond. Sci. Technol. 14 R1 (2001)
  49. Kouba R, Taga A et al Phys. Rev. B 64 (18) (2001)
  50. Maksimov E G, Savrasov D Yu Solid State Communications 119 569 (2001)
  51. Maksimov E G Uspekhi Fizicheskikh Nauk 170 1033 (2000)
  52. Kulić M L Physics Reports 338 1 (2000)
  53. Wysokiński K I Lecture Notes In Physics Vol. New Developments in High Temperature SuperconductivityStrong Correlations and Electron-Phonon Interaction in Superconductors545 Chapter 13 (2000) p. 211
  54. Ginzburg V L Uspekhi Fizicheskikh Nauk 170 619 (2000)
  55. Trunin M R, Nefyodov Yu A, Fink H J J. Exp. Theor. Phys. 91 801 (2000)
  56. Maksimov E G, Shilov Yu I Uspekhi Fizicheskikh Nauk 169 1223 (1999)
  57. Fabian Ja, Das S S Phys. Rev. Lett. 83 1211 (1999)
  58. Dobryakov A L, Lozovik Yu E Jetp Lett. 70 329 (1999)
  59. Revinskii A F Semiconductors 32 917 (1998)

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