Laser-based surface acoustic wave spectrometer for industrial applications

被引:30
|
作者
Maznev, AA [1 ]
Mazurenko, A [1 ]
Zhuoyun, L [1 ]
Gostein, M [1 ]
机构
[1] Philips Analyt, Natick, MA 01760 USA
来源
REVIEW OF SCIENTIFIC INSTRUMENTS | 2003年 / 74卷 / 01期
关键词
D O I
10.1063/1.1512680
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
A compact, robust, and fully automated optical system for laser generation and heterodyne detection of surface acoustic waves (SAWs) in the frequency range 0.1-1.3 GHz is presented. SAWs are generated by two short laser pulses forming an interference pattern at the sample surface, and detected via diffraction of a quasi-cw probe beam off the surface ripples produced by the SAWs. The detection is enhanced by optical heterodyning achieved through the introduction of a fourth (reference) beam. Both excitation and probe/reference beam pairs are produced by a phase grating optimized to provide maximum efficiency for the desirable diffraction orders at the two different optical wavelengths used for excitation and probing. The heterodyne arrangement has an excellent phase stability and provides a number of advantages compared to a conventional transient grating setup. These include enhanced signal level and suppression of "parasitic heterodyning" due to scattered light. The system provides reproducibility of SAW frequency measurements of similar to0.01% with measurement time of similar to1 s. Measurements can be performed on small test structures such as 50x50 mum boxes, with an integrated vision system helping position the measurement spot on the sample. (C) 2003 American Institute of Physics.
引用
收藏
页码:667 / 669
页数:3
相关论文
共 50 条
  • [21] Surface acoustic wave based microfluidic devices for biological applications
    Liu, Xianglian
    Chen, Xuan
    Yang, Ziwei
    Xia, He
    Zhang, Chuanyu
    Wei, Xueyong
    SENSORS & DIAGNOSTICS, 2023, 2 (03): : 507 - 528
  • [22] Nitride-based surface acoustic wave devices and applications
    Calle, F
    Pedrós, J
    Palacios, T
    Grajal, J
    E-MRS 2004 FALL MEETING SYMPOSIA C AND F, 2005, 2 (03): : 976 - 983
  • [23] Integrated Surface Acoustic Wave Based Sensors for Fluidic Applications
    Yildirim, Burak
    Senveli, Sukru U.
    Gajasinghe, Rajapaksha W. R. L.
    Tigli, Onur
    2016 IEEE SENSORS, 2016,
  • [24] LASER-BASED STUDIES WITH AN ION-TRAP MASS-SPECTROMETER - ION TOMOGRAPHY AND ANALYTICAL APPLICATIONS
    ALEXANDER, ML
    CISPER, ME
    HEMBERGER, PH
    NOGAR, NS
    WILLIAMS, JD
    SYKA, JEP
    INSTITUTE OF PHYSICS CONFERENCE SERIES, 1992, (128): : 337 - 341
  • [25] Surface acoustic wave microsensors and applications
    South Dakota State Univ, Brookings, United States
    Smart Mater Struct, 6 (658-667):
  • [26] Surface acoustic wave microsensors and applications
    Galipeau, DW
    Story, PR
    Vetelino, KA
    Mileham, RD
    SMART ELECTRONICS AND MEMS - SMART STRUCTURES AND MATERIALS 1997, 1997, 3046 : 198 - 208
  • [27] Surface acoustic wave microsensors and applications
    Galipeau, DW
    Story, PR
    Vetelino, KA
    Mileham, RD
    SMART MATERIALS & STRUCTURES, 1997, 6 (06): : 658 - 667
  • [28] Pulsed laser deposited zinc oxide films for surface acoustic wave applications
    Liu, Y.S.
    Wang, L.W.
    Li, W.Q.
    Huang, J.P.
    Lin, C.L.
    Gongneng Cailiao/Journal of Functional Materials, 2001, 32 (01): : 78 - 79
  • [29] A Laser-based Volumetric Measurement Approach for Industrial Settings
    Rutinowski, Jerome
    SchrOter, Niklas
    Kluttermann, Simon
    Roidl, Moritz
    Janiesch, Christian
    2024 IEEE 20TH INTERNATIONAL CONFERENCE ON AUTOMATION SCIENCE AND ENGINEERING, CASE 2024, 2024, : 3595 - 3601
  • [30] Infrared laser-based sensing in medical applications
    Sigrist, Markus W.
    Bartlome, Richard
    Gianella, Michele
    QUANTUM SENSING AND NANOPHOTONIC DEVICES VII, 2010, 7608