Abstract

A reply is made to the comments of A. Wirgin on an earlier paper [J. Opt. Soc. Am. <b>71</b>, 1224–1229 (1981)].

© 1982 Optical Society of America

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  1. A. Wirgin, "Reflection by a grating: Rayleigh methods: comments," J. Opt. Soc. Am. 72, 963–969 (1982).
  2. P. M. van den Berg, "Reflection by a grating: Rayleigh methods," J. Opt. Soc. Am. 71, 1224–1229 (1981).
  3. P. M. van den Berg, "Rigorous diffraction theory of optical reflection and transmission gratings," Ph.D. Thesis (Delft University of Technology, Delft, The Netherlands, 1971). Chapter 1 has been published as P. M. van den Berg, "Diffraction theory of a reflection grating," Appl. Sci. Res. 24, 261–293 (1971).
  4. I. Barrodale, "Basic approximation theory," in Numerical Solution of Integral Equations, L. M. Delves and J. Walsh, eds. (Clarendon, Oxford, 1974), Chap. 5.
  5. P. M. van den Berg, "Review of some computational techniques in scattering and diffraction," in Proceedings International U.R.S.I.-Symposium 1980, Munich (Union Radio-Scientifique Internationale, Brussels, 1980), pp. 211B/1–211B/6.
  6. R. F. Millar, "The Rayleigh hypothesis and a related least-square solution to scattering problems for periodic surfaces and other scatterers," Radio Sci. 8, 785–796 (1973).
  7. N. Amitay and V. Galindo, "On energy conservation and the method of moments in scattering problems," IEEE Trans. Antennas Propag. AP-17, 747–751 (1969).
  8. H. Ikuno and K. Yasuura, "Improved point-matching method with application to scattering from a periodic surface," IEEE Trans. Antennas Propag. AP-21, 657–662 (1973).

1982 (1)

1981 (1)

1973 (2)

H. Ikuno and K. Yasuura, "Improved point-matching method with application to scattering from a periodic surface," IEEE Trans. Antennas Propag. AP-21, 657–662 (1973).

R. F. Millar, "The Rayleigh hypothesis and a related least-square solution to scattering problems for periodic surfaces and other scatterers," Radio Sci. 8, 785–796 (1973).

1969 (1)

N. Amitay and V. Galindo, "On energy conservation and the method of moments in scattering problems," IEEE Trans. Antennas Propag. AP-17, 747–751 (1969).

Amitay, N.

N. Amitay and V. Galindo, "On energy conservation and the method of moments in scattering problems," IEEE Trans. Antennas Propag. AP-17, 747–751 (1969).

Barrodale, I.

I. Barrodale, "Basic approximation theory," in Numerical Solution of Integral Equations, L. M. Delves and J. Walsh, eds. (Clarendon, Oxford, 1974), Chap. 5.

Galindo, V.

N. Amitay and V. Galindo, "On energy conservation and the method of moments in scattering problems," IEEE Trans. Antennas Propag. AP-17, 747–751 (1969).

Ikuno, H.

H. Ikuno and K. Yasuura, "Improved point-matching method with application to scattering from a periodic surface," IEEE Trans. Antennas Propag. AP-21, 657–662 (1973).

Millar, R. F.

R. F. Millar, "The Rayleigh hypothesis and a related least-square solution to scattering problems for periodic surfaces and other scatterers," Radio Sci. 8, 785–796 (1973).

van den Berg, P. M.

P. M. van den Berg, "Reflection by a grating: Rayleigh methods," J. Opt. Soc. Am. 71, 1224–1229 (1981).

P. M. van den Berg, "Rigorous diffraction theory of optical reflection and transmission gratings," Ph.D. Thesis (Delft University of Technology, Delft, The Netherlands, 1971). Chapter 1 has been published as P. M. van den Berg, "Diffraction theory of a reflection grating," Appl. Sci. Res. 24, 261–293 (1971).

P. M. van den Berg, "Review of some computational techniques in scattering and diffraction," in Proceedings International U.R.S.I.-Symposium 1980, Munich (Union Radio-Scientifique Internationale, Brussels, 1980), pp. 211B/1–211B/6.

Wirgin, A.

Yasuura, K.

H. Ikuno and K. Yasuura, "Improved point-matching method with application to scattering from a periodic surface," IEEE Trans. Antennas Propag. AP-21, 657–662 (1973).

IEEE Trans. Antennas Propag. (2)

N. Amitay and V. Galindo, "On energy conservation and the method of moments in scattering problems," IEEE Trans. Antennas Propag. AP-17, 747–751 (1969).

H. Ikuno and K. Yasuura, "Improved point-matching method with application to scattering from a periodic surface," IEEE Trans. Antennas Propag. AP-21, 657–662 (1973).

J. Opt. Soc. Am. (2)

Radio Sci. (1)

R. F. Millar, "The Rayleigh hypothesis and a related least-square solution to scattering problems for periodic surfaces and other scatterers," Radio Sci. 8, 785–796 (1973).

Other (3)

P. M. van den Berg, "Rigorous diffraction theory of optical reflection and transmission gratings," Ph.D. Thesis (Delft University of Technology, Delft, The Netherlands, 1971). Chapter 1 has been published as P. M. van den Berg, "Diffraction theory of a reflection grating," Appl. Sci. Res. 24, 261–293 (1971).

I. Barrodale, "Basic approximation theory," in Numerical Solution of Integral Equations, L. M. Delves and J. Walsh, eds. (Clarendon, Oxford, 1974), Chap. 5.

P. M. van den Berg, "Review of some computational techniques in scattering and diffraction," in Proceedings International U.R.S.I.-Symposium 1980, Munich (Union Radio-Scientifique Internationale, Brussels, 1980), pp. 211B/1–211B/6.

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