Three-dimensional integration of microoptical components buried inside photosensitive glass by femtosecond laser direct writing

被引:0
|
作者
Zhongke Wang
Koji Sugioka
Katsumi Midorikawa
机构
[1] RIKEN – The Institute of Physical and Chemical Research,Laser Technology Laboratory
来源
Applied Physics A | 2007年 / 89卷
关键词
Optical Waveguide; Hollow Structure; Laser Direct Writing; Glass Chip; Lithium Metasilicate;
D O I
暂无
中图分类号
学科分类号
摘要
We report the three-dimensional (3D) integration of microoptical components such as microlenses, micromirrors and optical waveguides in a single glass chip by femtosecond (fs) laser direct writing. First, two types of microoptical lenses were fabricated inside photosensitive Foturan glass by forming hollow microstructures using fs laser direct writing followed by thermal treatment, successive wet etching and additional annealing. One type of lens is the cylindrical microlens with a curvature radius R of 1.0 mm, and the other is the plano-convex microlens with radius R of 0.75 mm. Subsequently, by the continuous procedure of hollow microstructure fabrication, a micromirror was integrated with the plano-convex microlens in the single glass chip. Further integration of waveguides was performed by internal refractive index modification using fs laser direct writing after the hollow structure fabrication of the microlens and the micromirror. A demonstration of the laser beam transmission in the integrated optical microdevice shows that the 3D integration of waveguides with a micromirror and a microoptical lens in a single glass chip is highly effective for light beam guiding and focusing.
引用
收藏
页码:951 / 955
页数:4
相关论文
共 50 条
  • [41] Fabrication of three-dimensional microchannels inside silicon using a femtosecond laser
    Li, Cunxia
    Chen, Tao
    Si, Jinhai
    Chen, Feng
    Shi, Xu
    Hou, Xun
    [J]. JOURNAL OF MICROMECHANICS AND MICROENGINEERING, 2009, 19 (12)
  • [42] On-chip three-dimensional high-Q microcavities fabricated by femtosecond laser direct writing
    Lin, Jintian
    Yu, Shangjie
    Ma, Yaoguang
    Fang, Wei
    He, Fei
    Qiao, Lingling
    Tong, Limin
    Cheng, Ya
    Xu, Zhizhan
    [J]. OPTICS EXPRESS, 2012, 20 (09):
  • [43] Influence of focusing depth on the microfabrication of waveguides inside silica glass by femtosecond laser direct writing
    D. Liu
    Y. Li
    R. An
    Y. Dou
    H. Yang
    Q. Gong
    [J]. Applied Physics A, 2006, 84 : 257 - 260
  • [44] Influence of focusing depth on the microfabrication of waveguides inside silica glass by femtosecond laser direct writing
    Liu, D.
    Li, Y.
    An, R.
    Dou, Y.
    Yang, H.
    Gong, Q.
    [J]. APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING, 2006, 84 (03): : 257 - 260
  • [45] Three-dimensional biomimetic microchannel network by laser direct writing
    Kam, Dong Hyuck
    Mazumder, Jyoti
    [J]. JOURNAL OF LASER APPLICATIONS, 2008, 20 (03) : 185 - 191
  • [46] Three-dimensional direct laser writing of biomimetic neuron structures
    Yu, Haoyi
    Zhang, Qiming
    Gu, Min
    [J]. OPTICS EXPRESS, 2018, 26 (24): : 32111 - 32117
  • [47] Three-dimensional chiral photonic crystals by direct laser writing
    Thiel, Michael
    Wegener, Martin
    von Freymann, Georg
    [J]. ADVANCED FABRICATION TECHNOLOGIES FOR MICRO/NANO OPTICS AND PHOTONICS, 2008, 6883
  • [48] Transverse writing of three-dimensional tubular optical waveguides in glass with a slit-shaped femtosecond laser beam
    Liao, Yang
    Qi, Jia
    Wang, Peng
    Chu, Wei
    Wang, Zhaohui
    Qiao, Lingling
    Cheng, Ya
    [J]. SCIENTIFIC REPORTS, 2016, 6
  • [49] Transverse writing of three-dimensional tubular optical waveguides in glass with a slit-shaped femtosecond laser beam
    Yang Liao
    Jia Qi
    Peng Wang
    Wei Chu
    Zhaohui Wang
    Lingling Qiao
    Ya Cheng
    [J]. Scientific Reports, 6
  • [50] Direct fabrication of freely movable microplate inside photosensitive glass by femtosecond laser for lab-on-chip application
    M. Masuda
    K. Sugioka
    Y. Cheng
    T. Hongo
    K. Shihoyama
    H. Takai
    I. Miyamoto
    K. Midorikawa
    [J]. Applied Physics A, 2004, 78 : 1029 - 1032