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Journal of the Optical Society of America

Journal of the Optical Society of America

  • Vol. 57, Iss. 11 — Nov. 1, 1967
  • pp: 1390_1–1392

Optics InfoBase > JOSA > Volume 57 > Issue 11 > Page 1390_1

Rayleigh—Huygens Diffraction Formulas: Boundary Conditions and Validity of Approximations

EMANUEL MAROM  »View Author Affiliations


JOSA, Vol. 57, Issue 11, pp. 1390_1-1392 (1967)
http://dx.doi.org/10.1364/JOSA.57.1390_1


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EMANUEL MAROM, "Rayleigh—Huygens Diffraction Formulas: Boundary Conditions and Validity of Approximations," J. Opt. Soc. Am. 57, 1390_1-1392 (1967)
http://www.opticsinfobase.org/josa/abstract.cfm?URI=josa-57-11-1390_1


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References

  1. H. Poincaré, Théorie Mathemalique de la Lumière (Georges Carré, Paris. 1802), Pt. II, pp. 187–188.
  2. N. Mukunda, J. Opt. Soc. Am. 52, 336 (1962).
  3. Lord Rayleigh, The Theory of Sound (Dover Publications, Inc., N. Y., 1945), Vol. II, p. 106.
  4. E. W. Marchand and E. Wolf, 3. Opt. Soc. Am. 56, 1712 (1966).
  5. L. Bergstein and E. Marom, J. Opt. Soc. Am. 56, 16 (1966).
  6. L. Bergstein and T. Zachos, J. Opt. Soc. Am. 56, 931 (1966).
  7. L. M. Brekhovskikh, Waves in Layered Media (Academic Press Inc., New York, 1960), p. 239.
  8. The integration and limit operations could be interchanged since the integration over u and ν is uniformly convergent in z.
  9. A. Papoulis, The Fourier Integral and Its Applications (McGraw—Hill Book Co., N. V., 1962), p. 281.

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