2D and 3D laser writing for integrated optical elements creation

被引:0
|
作者
Povolotskiy, A [1 ]
Shimko, A [1 ]
Manshina, A [1 ]
Bivona, S [1 ]
Ferrante, G [1 ]
机构
[1] St Petersburg State Univ, Laser Res Inst, St Petersburg 198504, Russia
来源
Proceedings of WFOPC 2005: 4th IEEE/LEOS Workshop on Fibres and Optical Passive Components | 2005年
关键词
FEMTOSECOND LASER; TRANSPARENT MATERIALS; CHALCOGENIDE GLASSES; PULSES; FILMS; SYSTEM; BULK;
D O I
10.1109/WFOPC.2005.1462107
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
We report on laser writing of 2D and 3D structures based on laser induced structural modifications. In our experiment, bulk glasses of chalcogenide systems Ga-Ge-S, As2S3 and Ga-Ge-S thin films have been used. Photo-structuring of the bulk glasses has been obtained by using low energy (< 2.5 nJ) fs laser pulses with wavelength of 815 nm, while the films have been photo-structured by using both fs and nitrogen lasers. Spherical structures in the bulk glasses have been found whose geometrical form and size depend on both the sample translation velocity and the laser pulse energy. With increasing the sample translation velocity up to 3cm/s, and for values of the average laser power of 150 mW, the spherical structures disappear and flat waveguides are created. The manufacturing laser threshold for bulk chalcogenide glasses was found to be about 2 - 10(10) W/cm(2). For the case of films irradiated by the nitrogen laser a blue shift of the optical absorption edge and a decrease of the refractive index were measured. The considerable and controllable change of the optical parameters allowed us to create waveguides showing the possibility of realizing integrated optical circuits with high density of elements.
引用
收藏
页码:98 / 102
页数:5
相关论文
共 50 条
  • [31] 2D or not 2D That is the Question, but 3D is the, answer
    Cronin, Paul
    ACADEMIC RADIOLOGY, 2007, 14 (07) : 769 - 771
  • [32] ChemSci3D: An integrated 2D and 3D desktop chemistry interface
    O'Donnell, T. J.
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2010, 239
  • [33] Writing of 3D optical integrated circuits with ultrashort laser pulses in the presence of strong spherical aberration
    Bukharin, M. A.
    Skryabin, N. N.
    Khudyakov, D. V.
    Vartapetov, S. K.
    II CONFERENCE ON PLASMA & LASER RESEARCH AND TECHNOLOGIES, 2016, 747
  • [34] 3D and 2D/3D holograms model
    A. A. Boriskevich
    V. K. Erohovets
    V. V. Tkachenko
    Optical Memory and Neural Networks, 2012, 21 (4) : 242 - 248
  • [35] The enormous versatility of laser technology for 2D and 3D engraving
    Stahl, Thomas
    Werkstatt und Betrieb, 2002, 135 (06): : 70 - 72
  • [36] 3D Map Building Using a 2D Laser Scanner
    Llamazares, A.
    Molinos, E. J.
    Ocana, M.
    Bergasa, L. M.
    Hernandez, N.
    Herranz, F.
    COMPUTER AIDED SYSTEMS THEORY - EUROCAST 2011, PT II, 2012, 6928 : 412 - 419
  • [37] Resolution-preserving passive 2D/3D convertible display based on holographic optical elements
    Yang, Yuhua
    Deng, Linxiao
    Zhu, Liquan
    Gu, Chun
    Xu, Lixin
    OPTICS EXPRESS, 2022, 30 (08) : 13356 - 13371
  • [38] MIXING 2D WITH 3D FINITE-ELEMENTS IN MAGNETIC MODELS
    BRAUER, JR
    SCHAEFER, SM
    LAMBERT, NJ
    MACNEAL, BE
    IEEE TRANSACTIONS ON MAGNETICS, 1990, 26 (05) : 2193 - 2195
  • [39] 2D/3D modelling of crack propagation with embedded discontinuity elements
    Sluys, LJ
    Berends, AH
    COMPUTATIONAL MODELLING OF CONCRETE STRUCTURES, VOLS 1 AND 2, 1998, : 399 - 408
  • [40] 21/2D or 3D?
    Roth, S
    Küster, B
    Sura, H
    KUNSTSTOFFE-PLAST EUROPE, 2004, 94 (07): : 65 - 67