Voir la notice de l'article provenant de la source Math-Net.Ru
[1] Polder D., Van Hove M., “Theory of Radiative Heat Transfer between Closely Spaced Bodies”, Phys. Rev. B, 4:10 (1971), 3303–3314 | DOI
[2] Pendry J. B., “Radiative Exchange of Heat between Nanostructures”, J. Phys.: Condens. Matter, 11 (1999), 6621–6633 | DOI
[3] Volokitin A. I., Persson B. N. J., “Radiative Heat Transfer and Vacuum Friction between Nanostructutes”, Phys. Rev. B, 63 (2001), 205404 | DOI
[4] Volokitin A. I., Persson B. N. J., “The frictional drag force between quantum wells mediated by a fluctuating electromagnetic field”, J. Phys.: Condens. Matter, 13 (2001), 859–873 | DOI
[5] Volokitin A. I., Persson B. N. J., “Theory of friction: the contribution from a fluctuating electromagnetic field”, J. Phys.: Condens. Matter, 11 (1999), 345–359 ; Phys. Low-Dim. Struct., 1998, no. 7–8, 17–28; “Comment on “Brownian Motion of Microscopic Solids under the Action of Fluctuating Electromagnetic Fields””, Phys. Rev. Lett., 84:15 (2000), 3504 | DOI | DOI
[6] Volokitin A. I., Persson B. N. J., “Dissipative Van der Waals interaction between a small particle and a metal surface”, Phys. Rev. B, 65 (2002), 115419 | DOI
[7] Gostman B., Seidel C., Anczykowski B., Fuchs H., Phys. Rev. B, 60:15 (1999), 11051–11061 | DOI
[8] Pogrebenskii M. B., FTP, 11 (1977), 372; Price J. P., “Hot electron effects in heterolayers”, Physica B, 117–118 (1983), 750–752 | DOI
[9] Gramila T. J., Eisenstein J. P., MacDonald A. H. et al., “Mitual Friction between Parallel Two-Dimensional Electron Systems”, Phys. Rev. Lett., 66:9 (1991), 1216–1219 | DOI
[10] Schmid H., Biebuyck H., Michel B., Martin O. J. F., “Light-coupling masks for lensless, sub-wavelengh optical lithography”, Appl. Phys. Lett., 72:19 (1998), 2379–2381 | DOI
[11] Dayo A., Alnasrallah W., Krim J., “Quarz Microbalance Studies of Superconductivity-Dependent Sliding Friction”, Phys. Rev. Lett., 80 (1998), 1690 | DOI
[12] Persson B. N. J., Tosatti E., “The puzzling collapse of electronic sliding friction on a superconductor surface”, Surf. Sci. Lett., 411 (1998), L855–L857 | DOI