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Generation of DOE forming an annular LP mode using the technology of direct ablation of a quartz plate by an UV laser

V.S. Pavelyev1,2, V.A. Soifer1,2, B.N. Chichkov3, T. Temme3, L. Buettner3, M. Duparré4, B. Luedge4
1 Samara State Aerospace University

 2 Image Processing Systems Institute of RAS

 3 Hanover Laser Center LZH (Hanover, Germany)

4 Institute of Applied Optics, Friedrich Schiller University (Jena, Germany)

 PDF, 214 kB

Pages: 66 - 69.

Abstract:
The article considers the results of a study of a visible-range DOE (wavelength - 632.8 nm) produced by direct ablation of a quartz plate by UV laser radiation (wavelength – 157 nm) in a nitrogen atmosphere. A comparative analysis of the results of natural experiments with the results of numerical simulation of DOE is performed.

Keywords:
DOE, LP mode, UV laser, quartz plate, visible-range, wavelength, nitrogen atmosphere.

Citation:
Pavelyev VS, Soifer VA, Chichkov BN, Temme T, Buettner L, Duparré M, Luedge B. Generation of DOE forming an annular LP mode using the technology of direct ablation of a quartz plate by an UV laser. Computer Optics 2002; 24: 66-69.

References:

  1. Golovashkin GL, Kazanskiy NL, Pavelyev VS, Soifer VA, Solovyev VS, Usplenyev GV, Volkov AV. Technology of DOE fabrication. Chap 4. In Book: Soifer VA, ed. Method for computer design of diffractive optical elements. New York: John Wiley & Sons Inc; 2002.
  2. Pavelyev VS, Soifer VA, Duparré M, Kowarschik R, Luedge B, Kley B. Iterative calculation, manufacture and investigation of DOE forming unimodal complex distribution. Opt Lasers Eng 1998; 29: 269-279.
  3. Kononenko VV, Konov VI, Pavelyev VS, Pimenov SM, Prokhorov AM, Soifer VA. Diamond diffractive optics for high-power CO2 lasers [In Russian]. Kvantovaya Elektrinika 1999; 26(1): 9-10.
  4. Kononenko VV, Konov VI, Pimenov SM, Prokhorov AM, Pavelyev VS, Soifer VA. CVD diamond transmissive diffractive optics for CO2 lasers. New Diam Front C Tec 2000; 10: 97-107.
  5. Flury M, Benatmane A, Gerard P, Montgomery PC, Fontaine J, Engel T, Schunck JP. Rapid prototyping of diffractive optical elements for highpower lasers using laser ablation lithography fabrication and coherence probe microscopy analysis // Opt Eng 2002; 41(10): 2407-2418.
  6. Karpeev SV, Pavelyev VS, Duparré M, Lüdge B, Rokshtul K, Schröter Z. Analysis and formation of the transverse-mode composition of coherent radiation in a fiber optic waveguide with a stepped refractive index profile using DOE. Computer Optics 2002; 23: 4-9.
  7. Yariv A. Quantum electronics. New York: John Wiley & Sons Inc; 1989.
  8. Kirk JP, Jones AL. Phase-only complex-valued spatial filter. J Opt Soc Am 1971; 61(8): 1023-1028.
  9. Pavelyev VS, Soifer VA. Selection of laser radiation modes [In Russian]. Chap 6. In Book: Soifer VA, ed. Methods of computer optics [In Russian]. Moscow: "Fizmatlit" Publisher; 2000: 395-469.
  10. Abramowitz MA, Stegun IA. Handbook of special functions: With formulas, graphs, and mathematical tables. Dover Publications; 1965.

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