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Modeling the light diffraction by micro-optics elements using the finite element method

D.V. Nesterenko, V.V. Kotlyar, Y.Wang1

Image Processing Systems Institute of Russian Academy of Sciences, Russia

1Beijing Institute of Technology, Beijing 100081, China

 PDF, 298 kB

Pages: 40-43.

Full text of article: English language.

Abstract:
Technological advances has made it possible to perform microprocessing of optical and diffractive devices of subwavelength size. Such elements can be applied in holography, spectroscopy, interferometry, and optical data processing.

Citation:
Nesterenko DV, Kotlyar VV, Wang Y. Modeling the light diffraction by micro-optics elements using the finite element method. Computer Optics 1999; 19: 40 - 43.

References:

  1. Mirotznik M.S., Prather D.W., Mait J.N. A hybrid finite element – boundary element method for the analysis of diffractive elements.//Journal Of Modern Optics.-1996.-v.43.-no.7.-p.1309
  2. B. Lichtenberg, Gallagher N.C. Numerical modeling of diffractive devices using the finite element method.//Optical Engineering. -Nov.1994.-v.33.-no.11.-p.3518.
  3. D. L. Golovashkin, A. A. Degtyarev, V. A. Soifer, Modeling the waveguide optical radiation propagation using the electromagnetic theory, Journal of Computer Optics, 1997, No. 17, p. 5.
  4. S. Solimeno, B. Crosiniani, P. Di Porto, diffraction and wavegiude propagation of optical radiation, Moscow, Mir Publishers, 1984, p. 13, 256 pages.
  5. G. I. Marchuk, Methods of computational mathematics, Moscow, Mir Publishers, 1980, p. 32, p.64.

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