[1] Bazalij, B. V., Shelepov, V. Yu.:
On the spectrum of the potential of a double layer on a curve of bounded rotation. In: Boundary Value Problems for Differential Equations Collect. Sci. Works Kiev (1980), 13-30 Russian.
Zbl 0462.47034
[4] Goray, L. I., Schmidt, G.:
Solving conical diffraction with integral equations. J. Opt. Soc. Am. A 27 (2010), 585-597.
DOI 10.1364/JOSAA.27.000585
[5] Goray, L. I., Seely, J. F., Sadov, S. Yu.:
Spectral separation of the efficiencies of the inside and outside orders of soft-x-ray-extreme-ultraviolet gratings at near normal incidence. J. Appl. Physics 100 (2006).
DOI 10.1063/1.2359224
[6] Gotlib, V. Yu.:
On solutions of the Helmholtz equation that are concentrated near a plane periodic boundary. J. Math. Sci., New York 102 4188-4194; Zap. Nauchn. Semin. POMI 250 (1998), 83-96 Russian.
DOI 10.1007/BF02673850 |
MR 1701861 |
Zbl 1071.35512
[7] Maystre, D.:
A new general integral theory for dielectric coated gratings. J. Opt. Soc. Am. 68 (1978), 490-495.
DOI 10.1364/JOSA.68.000490
[11] Schmidt, G.:
Boundary integral methods for periodic scattering problems. In: Around the Research of Vladimir Maz'ya II. Partial Differential Equations International Mathematical Series 12 Dordrecht: Springer A. Laptev (2010), 337-363.
MR 2676182 |
Zbl 1189.78026
[12] Schmidt, G., Kleemann, B. H.:
Integral equation methods from grating theory to photonics: An overview and new approaches for conical diffraction. J. Mod. Opt 58 (2011), 407-423.
DOI 10.1080/09500340.2010.538734 |
Zbl 1221.78050