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Reflectance anisotropy of the (110) reconstructed surface of gold

Shu Wang

W. Luis Mochán

Rubén G. Barrera

  • Centro de Investigación en Física, Universidad de Sonora, Apartado Postal A-88, 83190 Hermosillo, Sonora, México

  • Laboratorio de Cuernavaca, Instituto de Física, Universidad Nacional Autónoma de México, Apartado Postal 139-B, 62191 Cuernavaca, Morelos, México

  • Instituto de Física, Universidad Nacional Autónoma de México, Apartado Postal 20-364, 01000 México, Distrito Federal, México

Phys. Rev. B 42, 9155 – Published 15 November, 1990

DOI: https://doi.org/10.1103/PhysRevB.42.9155

Abstract

The reflectance anisotropy of a Au(110) reconstructed surface has been calculated using a perturbative theory for the electromagnetic fields near the microrough interface. Since the induced fields have atomic-scale fluctuations, spatial dispersion was accounted for by applying a recently developed extension of the Rayleigh method to nonlocal rough systems. Significant differences are obtained between local and nonlocal calculations.

References (16)

  1. D. E. Aspnes and A. A. Studna, Phys. Rev. Lett. 54, 1956 (1985); D. E. Aspnes, J. Vac. Sci. Technol. B 3, 1138 (1985); ibid. 3, 1498 (1985); S. E. Acosta-Ortiz and A. Lastras-Martínez, Solid State Commun. 64, 809 (1987).
  2. A. Tadjeddine, D. M. Kolb and R. Kötz, Surf. Sci. 101, 277 (1980).
  3. S. Suto, K.-D. Tuei, E. W. Plummer and E. Burstein, Phys. Rev. Lett. 63, 2590 (1989); M. Rocca and U. Valbusa, 64, 2398 (1990).
  4. T. E. Furtak and D. W. Lynch, Phys. Rev. Lett. 35, 960 (1975).
  5. R. Kötz and D. M. Kolb, Z. Phys. Chem. 112, 69 (1978).
  6. R. Kötz and H. J. Lewerenz, Surf. Sci. 78, L233 (1978).
  7. W. L. Mochán and Rubén G. Barrera, Phys. Rev. Lett. 55, 1192 (1985); ibid. 56, 2221 (1986).
  8. F. Manghi, R. Del Sole, E. Molinari and A. Selloni, Surf. Sci. 211, 518 (1989); F. Manghi, R. Del Sole, A. Selloni and E. Molinari, Phys. Rev. B 41, 9935 (1990); A. Sellon, P. Marsella and R. Del Sole, ibid. 33, 8885 (1986).
  9. R. Del Sole and Annabella Selloni, Phys. Rev. B 30, 883 (1984); S. Selci, P. Chiaradia, F. Ciccacci, A. Cricenti, N. Sparvieri and G. Chiarotti, ibid. 31, 4096 (1985); G. Chiarotti, S. Nannarone, R. Pastore and P. Chiaradia, ibid. 4, 3398 (1971).
  10. W. Luis Mochán and José Récamier, Phys. Rev. Lett. 63, 2100 (1989).
  11. M. A. Van Hove, R. J. Koestner, P. C. Stair, J. P. Bibérian, L. Kesmodel, I. Bartos and G. A. Somorjai, Surf. Sci. 103, 218 (1981); K.-M. Ho and K. P. Bohnen, Europhys. Lett. 4, 345 (1987); Phys. Rev. Lett. 59, 1833 (1987).
  12. Shu Wang, R. G. Barrera and W. L. Mochán, Phys. Rev. B 40, 1571 (1989).
  13. P. J. Feibelman, Prog. Surf. Sci. 12, 287 (1982).
  14. W. L. Mochán, M. del Castillo-Mussot and R. G. Barrera, Phys. Rev. B 35, 1088 (1987); M. del Castillo-Mussot and W. L. Mochán, ibid. 36, 1779 (1987); W. L. Mochán and M. del Castillo-Mussot, ibid. 37, 6763 (1988).
  15. P. B. Johnson and R. W. Christy, Phys. Rev. B 6, 4370 (1972).
  16. N. W. Ashcroft and N. D. Mermin, Solid State Physics (Holt, Rinehart and Winston, New York, 1976), pp. 10-38.

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