Helical wave-front laser beam generated with a microelectromechanical systems (MEMS)-based device

被引:3
|
作者
Zhou, GY [1 ]
Chau, FS [1 ]
机构
[1] Natl Univ Singapore, Dept Mech Engn, Micro & Nano Syst Initiat, Singapore 119260, Singapore
关键词
microelectromechanical systems (MEMS); micromirrors; optical vortex; trapping;
D O I
10.1109/LPT.2005.862002
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 a novel helical wave-front laser beam generator based on microelectromechanical systems (MEMS) technology. The device consists of a circular array of micromirrors; each can be electrostatically actuated to move perpendicular to the substrate to modulate the phase of an incident laser beam. A prototype device has been developed using the polysilicon multiuser MEMS processes. The ability of the device to transform a plane wave into an l = 3 helical wave-front laser beam has been experimentally demonstrated. Additionally, the device is faster by two orders of magnitude or more than conventional liquid crystal spatial light modulators. In combination with a rapid optical beam steering system, the proposed device might provide new capabilities for fast-scanned optical tweezer arrays, allowing them to combine optical vortices and conventional traps together to trap, guide, and rotate a wide variety of particles.
引用
收藏
页码:292 / 294
页数:3
相关论文
共 50 条
  • [31] WAVE-FRONT CONTROL IN OPTICAL-FEEDBACK SYSTEMS
    VORONTSOV, MA
    SHISHAKOV, KV
    SHMALGAUZEN, VI
    IZVESTIYA AKADEMII NAUK SSSR SERIYA FIZICHESKAYA, 1990, 54 (06): : 1060 - 1065
  • [32] WAVE-FRONT ANALYZERS OF ADAPTIVE OPTICAL-SYSTEMS
    BELOUSOVA, IM
    BUKANOV, AV
    GRIGOREV, VA
    GRYAZNOV, NA
    KISELEV, VM
    LEONOV, SN
    MELKONYAN, AL
    NOVOSELOV, NA
    SKEPKO, AG
    STOLBOV, MB
    SOVIET JOURNAL OF OPTICAL TECHNOLOGY, 1992, 59 (06): : 341 - 351
  • [33] VISUALIZATION OF RF ACOUSTIC WAVE-FRONT BY LASER CORRELATION THEORY
    YANG, XM
    YI, M
    HUAN, ZH
    JOURNAL OF THE OPTICAL SOCIETY OF AMERICA A-OPTICS IMAGE SCIENCE AND VISION, 1986, 3 (13): : P74 - P75
  • [34] Wave-front evaluation of the Ni-like Ag laser
    Murai, K
    Sebban, S
    Tang, HJ
    Yoshizumi, Y
    Daido, H
    Kato, Y
    Klisnick, A
    Zeitoun, P
    Wang, S
    Gu, Y
    Huang, G
    Lin, Z
    JOURNAL DE PHYSIQUE IV, 2001, 11 (PR2): : 155 - 158
  • [35] Wave-front tilt sensor with two quadrant detectors and its application to a laser beam pointing system
    Toyoda, M
    Araki, K
    Suzuki, Y
    APPLIED OPTICS, 2002, 41 (12) : 2219 - 2223
  • [36] CO2-LASER RADIATION WAVE-FRONT REVERSAL IN A 3-BEAM INTERACTION SCHEME
    BOLOTSKIKH, LT
    BUTENKO, AV
    POPKOV, VG
    POPOV, AK
    SHALAEV, VM
    KVANTOVAYA ELEKTRONIKA, 1986, 13 (05): : 1058 - 1061
  • [37] SOME ASPECTS OF WAVE-FRONT CONJUGATION APPLICATION IN LASER-BEAM PROPAGATION IN INHOMOGENEOUS-MEDIUM
    KRUZHILIN, YI
    HIGH POWER LASERS AND LASER MACHINING TECHNOLOGY, 1989, 1132 : 53 - 57
  • [38] LASER-BEAM PHASING UNDER WAVE-FRONT REVERSAL ON MANDELSTAM-BRILLOUIN STIMULATED SCATTERING
    GRATSIANOV, KV
    KORNEV, AF
    LYUBIMOV, VV
    PANKOV, VG
    OPTIKA I SPEKTROSKOPIYA, 1990, 68 (03): : 617 - 619
  • [39] Wave-front tilt sensor with two quadrant detectors and its application to a laser beam pointing system
    Toyoda, Masahiro
    Araki, Kenichi
    Suzuki, Yoshiaki
    Applied Optics, 2002, 41 (12): : 2219 - 2223
  • [40] Wave-front correction of a femtosecond laser using a deformable mirror
    Daly, E
    Dainty, C
    O'Connor, G
    Glynn, T
    Laser Resonators and Beam Control VIII, 2005, 5708 : 71 - 82