Export citation

Export citation

Choose format for download:

Download Citation
  • Access by Xinjiang University

Quantization of Evanescent Electromagnetic Waves

C. K. Carniglia* and L. Mandel

  • Department of Physics and Astronomy, University of Rochester, Rochester, New York 14627

  • *Also at the Institute of Optics, University of Rochester, Rochester, N. Y.

Phys. Rev. D 3, 280 – Published 15 January, 1971

DOI: https://doi.org/10.1103/PhysRevD.3.280

Abstract

The problem of the quantization of evanescent waves, which appear in the angular spectrum representation of the electromagnetic field in a half-space, is discussed. Although evanescent waves are associated with material sources, scatterers, etc., we are able to treat the electromagnetic field, including the evanescent waves, effectively as a free field, by making use of the idea of the refractive index of a passive, macroscopically continuous medium. We consider a space which is filled with a homogeneous dielectric to the left of the plane z=0, and is empty to the right of the plane. Triplets of incident, reflected, and transmitted waves at the interface form the fundamental orthogonal modes of the space. By expanding the field in terms of these triplet modes, we show that the field Hamiltonian reduces to the sum of independent harmonic-oscillator Hamiltonians. The quantization is therefore straightforward. We introduce the creation and annihilation operators for the triplet wave modes, and encounter Fock states, coherent states, etc., for a field having evanescent wave components. The field commutator at two space-time points in the right half-space is shown to have an explicit contribution from evanescent waves, characterized by an exponential decay to the right and a propagation parallel to the interface. We also examine the problem of atomic excitation by quantized evanescent waves, and show that the results are of the form given by semiclassical treatments.

Comments & Replies

Completeness of Evanescent Waves

I. Białynicki-Birula and J. B. Brojan
Phys. Rev. D 5, 485 (1972)

References (28)

  1. G. Quincke, Ann. Phys. Chem. 5, 1 (1866)
  2. E. E. Hall, Phys. Rev. 15, 73 (1902)
  3. C. J. Bouwkamp, Rept. Progr. Phys. 17, 39 (1954)
  4. E. Wolf, Proc. Phys. Soc. (London) 74, 269 (1959)
  5. P. C. Clemmow, The Plane Wave Spectrum Representation of Electromagnetic Fields, 1st ed. (Pergamon, New York, 1966)
  6. G. C. Sherman, J. Opt. Soc. Am. 57, 1160 (1967) ibid.57, 1490 (1967)
  7. J. R. Shewell and E. Wolf, J. Opt. Soc. Am. 58, 1596 (1968)
  8. E. Lalor, J. Opt. Soc. Am. 58, 1235 (1968)
  9. A. Walther, J. Opt. Soc. Am. 58, 1256 (1968) ibid.59, 1325 (1969)
  10. G. Toraldo di Francia, Nuovo Cimento 16, 61 (1960)
  11. R. Asby and E. Wolf, J. Opt. Soc. Am. (to be published)
  12. P. A. M. Dirac, Proc. Roy. Soc. (London) A167, 148 (1938) J. A. Wheeler and R. P. Feynman, Rev. Mod. Phys. 17, 157 (1945) C. J. Eliezer, ibid. 19, 147 (1947) J. Schwinger, Phys. Rev. 75, 1912 (1949) F. Rohrlich, Am. J. Phys. 28, 639 (1960) G. N. Plass, Rev. Mod. Phys. 33, 37 (1961) M. D. Crisp and E. T. Jaynes, Phys. Rev. 179, 1253 (1969)
  13. C. F. Weizsäcker, Ann. Physik 5, 869 (1933) E. J. Williams, Proc. Roy. Soc. (London) A139, 163 (1933)
  14. R. W. Wood, Physical Optics, 3rd ed. (McMillan, London, 1934), p. 420 H. Forster [Diplomarbeit, Philipps-Universitat Marburg/Lahn, 1967 (unpublished)] K. H. Drexhage, Sci. Am. 222, 108 (1970)
  15. A. Devaney, G. Sherman, and L. Mandel (unpublished) J. Opt. Soc. Am. 60, 738 (1970)
  16. D. A. Tidman, Nucl. Phys. 2, 289 (1956) R. K. Bullough, J. Phys. A (London) 1, 409 (1968) ibid.2, 477 (1969)
  17. M. Born and E. Wolf, Principles of Optics, 4th ed. (Pergamon, Oxford, 1970), p. 38
  18. [15]
  19. Jan Hilgevoord, Dispersion Relations and Causal Description (North-Holland, Amsterdam, 1960)
  20. W. H. Louisell, Radiation and Noise in Quantum Electronics (McGraw-Hill, New York, 1964)
  21. Omitted endnote

  22. J. S. Schweber, An Introduction to Relativistic Quantum Field Theory (Harper and Row, New York, 1961), p. 159
  23. R. J. Glauber, Phys. Rev. 131, 2766 (1963)
  24. C. L. Mehta and E. C. G. Sudarshan, Phys. Rev. 138, B274 (1965)
  25. J. R. Klauder, Phys. Rev. Letters 16, 534 (1966)
  26. L. Mandel, Phys. Rev. 144, 1071 (1966)
  27. L. Mandel and E. Wolf, Rev. Mod. Phys. 37, 231 (1965)
  28. L. Mandel, E. C. G. Sudarshan, and E. Wolf, Proc. Phys. Soc. (London) 84, 435 (1964)

Outline

Information

Sign In to Your Journals Account

Filter

Filter

Article Lookup

Enter a citation