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Please use this identifier to cite or link to this item: http://hdl.handle.net/1959.3/215071
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- Three-dimensional recording and structuring of chalcogenide glasses by femtosecond pulses
- Juodkazis, Saulius; Kondo, Toshiaki; Rode, Andrei; Matsuo, Shigeki; Misawa, Hiroaki
- We report on three-dimensional (3D) holographic recording in As2S3 glass using 800 nm wavelength, 150 fs duration pulses. Diffractive beam splitter was used to generate 2 - 5 beams which were then focused for recording by objective lens of numerical aperture NA = 0.75. The recorded 3D hologram was read out by diffraction of 632 nm HeNe laser beam confirming the expected pattern of holograms. The mechanism of photo-darkening and optical damaging of As2S3 glass and dielectrics in general is discussed. Two-photon absorption cross-section, σ2 = 74.6 x 10-50 cm4/s, was determined by transmission for pulses of 150 fs and 800 nm wavelength. Also, it is demonstrated that the optical damage threshold scales as the bandgap energy for the fluorides. Nano-/micro-structuring of As2S3 glass by ablation in air will be also demonstrated. High fluence (> 5 J/cm2) irradiation of the 800 nm wavelength, 150 fs duration pulses was used to ablate As2S3 glass. Self-organized growth of the fibers, rods, and microsphere-type structures was observed. Composition of the nano-/micro-structured material was close to that of the source As2S3 glass (with up to 20% surplus of sulphur in nano-rods). Straight rods as thin as 20 nm in diameter and over 1 μm-long were obtained. Application potential of nano-/micro-structured As2S3 glass is discussed.
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- Conference paper
- Proceedings of SPIE: proceedings of the Fifth International Symposium on Laser Precision Microfabrication (LPM 2004), Nara-Ken, Japan, 11-14 May 2004 / Isamu Miyamoto, Henry Helvajian, Kazuyoshi Itoh, Kojiro F. Kobayashi, Andreas Ostendorf and Koji Sugioka (eds.), Vol. 5662, pp. 179-184
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- Copyright © 2004 Society of Photo-Optical Instrumentation Engineers. This paper was originally published in Proceedings of SPIE (Vol. 5662), and is available from: http://dx.doi.org/10.1117/12.596322. The published version of the paper is reproduced here in accordance with the copyright policy of the publisher. One print or electronic copy may be made for personal use only. Systematic electronic or print reproduction and distribution, duplication of any material in this paper for a fee or for commercial purposes, or modification of the content of the paper are prohibited.