Investigation of Optical Flatness of Stretched Membrane Drum-Type Micromirror

被引:3
|
作者
Kundu, Subrata Kumar [1 ]
Hikita, Akiyoshi [1 ]
Kumagai, Shinya [1 ]
Sasaki, Minoru [1 ]
机构
[1] Toyota Technol Inst, Dept Adv Sci & Technol, Nagoya, Aichi 4688511, Japan
关键词
Dynamic deformation; micromirror; optical scanning; static flatness; stretched membrane;
D O I
10.1109/JLT.2012.2186432
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
Realizing an optically flat and lightweight high-speed scanning micromirror still remains as a challenging problem. In this paper, we propose a drum-type lightweight micromirror that is capable of providing high scanning speed and retaining optical flatness, simultaneously. The fabrication technique and surface deformation analysis of the proposed micromirror are described. The drum-type design is realized using a stretched polycrystalline (poly-) Si membrane across a rigid crystalline (c-) Si ring. The tensile stress in the poly-Si membrane is 300-400 MPa that keeps the membrane flat. At the static condition, the total peak-to-valley surface heights in the center poly-Si membrane of the designed five distinct shapes of micromirrors are varied from 16 to 29 nm. The stress concentration at mirror edge is investigated by the amount of surface distortion which is less than 40 nm (i.e., one-tenth wavelength of the blue light). The maximum total peak-to-valley surface height is about 50 nm and the dominant profile is at the connecting part between the c-Si ring and the poly-Si membrane. The amount of dynamic deformation in the poly-Si membrane is less than 40 nm. This satisfies the optical flatness compared to the wavelength of blue light.
引用
收藏
页码:1377 / 1385
页数:9
相关论文
共 50 条
  • [21] Dynamic modeling and analysis of drum-type washing machine
    Hee-Tae Lim
    Weui-Bong Jeong
    Keun-Joo Kim
    International Journal of Precision Engineering and Manufacturing, 2010, 11 : 407 - 417
  • [22] Dynamic Modeling and Analysis of Drum-type Washing Machine
    Lim, Hee-Tae
    Jeong, Weui-Bong
    Kim, Keun-Joo
    INTERNATIONAL JOURNAL OF PRECISION ENGINEERING AND MANUFACTURING, 2010, 11 (03) : 407 - 417
  • [23] Very-High-Speed Drum-Type Camera
    Baird, K. M.
    Durie, D. S. L.
    JOURNAL OF THE SOCIETY OF MOTION PICTURE ENGINEERS, 1949, 53 (05): : 489 - 495
  • [24] Optimized design of the claw of a drum-type mixing reclaimer
    Qiu, Chongguang
    Qizhong Yunshu Jixie/Hoisting and Conveying Machinery, (11): : 14 - 16
  • [25] Investigation of the Technology of Shutdown for Hot Reserve and Subsequent Startup of Drum-type Boiler Units.
    Tugov, A.I.
    Felitsyna, N.I.
    Teploenergetika, 1982, (11): : 9 - 15
  • [26] IMPROVED LIGHT-RAY OSCILLOGRAPH WITH A DRUM-TYPE MAGAZINE
    PLUZHNIK, VI
    PARSHUKOV, PA
    MEASUREMENT TECHNIQUES, 1975, 18 (02) : 242 - 243
  • [27] CELL WITH PERPENDICULAR ELECTRODES FOR ASSESSING ELECTROLYTES IN DRUM-TYPE BATHS
    ANDREEV, IN
    KAIDRIKOV, RA
    KUSHNIKOVSKAYA, GA
    PROTECTION OF METALS, 1985, 21 (03): : 385 - 387
  • [28] Design and optimization of drum-type electrostatic separators for plastics recycling
    Wei, J
    Realff, MJ
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2005, 44 (10) : 3503 - 3509
  • [29] PROSPECTS FOR THE USE OF DRUM-TYPE UNITS TO RECYCLE METALLURGICAL SLAGS
    Demin, B. L.
    Sorokin, Yu. V.
    Shcherbakov, E. N.
    Shvetsov, E. E.
    Derlin, A. A.
    METALLURGIST, 2016, 59 (11-12) : 1020 - 1023
  • [30] Design of Compound Drum-type Bag-breaking Device
    Huang, Bin
    Zhou, Yang
    Liu, Chunzhu
    2ND INTERNATIONAL CONFERENCE ON NEW ENERGY AND RENEWABLE RESOURCES (ICNERR 2017), 2017, : 165 - 171