Citation: Sy. Shi et Dw. Prather, Electromagnetic analysis of axially symmetric diffractive optical elementsilluminated by oblique incident plane waves, J OPT SOC A, 18(11), 2001, pp. 2901-2907
Citation: Sy. Shi et al., Analysis of diffractive optical elements using a nonuniform finite-difference time-domain method, OPT ENG, 40(4), 2001, pp. 503-510
Citation: M. Lecompte et al., Photoresist characterization and linearization procedure for the gray-scale fabrication of diffractive optical elements, APPL OPTICS, 40(32), 2001, pp. 5921-5927
Citation: Dw. Prather et S. Shi, Electromagnetic analysis of axially symmetric diffractive lenses with the method of moments, J OPT SOC A, 17(4), 2000, pp. 729-739
Citation: Dw. Prather et al., Electromagnetic optimization of multilevel diffractive elements by use of the wavelet transform, OPTICS LETT, 25(14), 2000, pp. 1004-1006
Authors:
Mirotznik, MS
Prather, DW
Mait, JN
Beck, WA
Shi, SY
Gao, X
Citation: Ms. Mirotznik et al., Three-dimensional analysis of subwavelength diffractive optical elements with the finite-difference time-domain method, APPL OPTICS, 39(17), 2000, pp. 2871-2880
Citation: Dw. Prather et Sy. Shi, Formulation and application of the finite-difference time-domain method for the analysis of axially symmetric diffractive optical elements, J OPT SOC A, 16(5), 1999, pp. 1131-1142
Citation: Jn. Mait et al., Design of binary subwavelength diffractive lenses by use of zeroth-order effective-medium theory, J OPT SOC A, 16(5), 1999, pp. 1157-1167
Citation: Dw. Prather et al., Field stitching algorithm for the analysis of electrically large diffractive optical elements, OPTICS LETT, 24(5), 1999, pp. 273-275
Citation: Sy. Shi et Dw. Prather, Vector-based plane-wave spectrum method for the propagation of cylindricalelectromagnetic fields, OPTICS LETT, 24(21), 1999, pp. 1445-1447
Citation: Dw. Prather, Design and application of subwavelength diffractive lenses for integrationwith infrared photodetectors, OPT ENG, 38(5), 1999, pp. 870-878