Microcantilever Displacement Measurement Using a Mechanically Modulated Optical Feedback Interferometer

被引:3
|
作者
Azcona, Francisco J. [1 ]
Jha, Ajit [1 ]
Yanez, Carlos [1 ]
Atashkhooei, Reza [1 ]
Royo, Santiago [1 ]
机构
[1] UPC BarcelonaTech, Ctr Sensors Instruments & Syst Dev CD6, Rambla St Nebridi 10, E-08222 Terrassa, Spain
关键词
optical feedback interferometry; displacement measurement; nanometric resolution; atomic force microscopy; SELF-MIXING INTERFERENCE; LASER; VIBRATION; PHASE; CALIBRATION; MOLECULES; AFM;
D O I
10.3390/s16070997
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Microcantilever motion detection is a useful tool for the characterization of the physical, chemical and biological properties of materials. In the past, different approaches have been proposed and tested to enhance the behavior, size and simplicity of microcantilever motion detectors. In this paper, a new approach to measure microcantilever motion with nanometric resolution is presented. The proposed approach is based on the concept of mechanically-modulated optical feedback interferometry, a technique that has shown displacement measurement capabilities well within the nanometric scale and that, due to its size, compactness and low cost, may be a suitable choice for measuring nanometric motions in cantilever-like sensors. It will be shown that the sensor, in its current state of development, is capable of following a cantilever sinusoidal trajectory at different sets of frequencies ranging up to 200 Hz and peak to peak amplitudes up to lambda/2 with experimental resolutions in the lambda/100 range.
引用
收藏
页数:17
相关论文
共 50 条
  • [1] Displacement measurement using a laser feedback grating interferometer
    Guo, Dongmei
    Wang, Ming
    Hao, Hui
    APPLIED OPTICS, 2015, 54 (31) : 9320 - 9325
  • [2] Optical displacement measurement using a monolithic Michelson interferometer
    Hofstetter, D
    Zappe, HP
    MINIATURIZED SYSTEMS WITH MICRO-OPTICS AND MICROMECHANICS II, 1997, 3008 : 142 - 151
  • [3] Displacement estimation with an optical feedback interferometer using an evolutionary algorithm
    Doncescu, Andrei
    Bes, Caroline
    Bosch, Thierry
    2007 IEEE SENSORS, VOLS 1-3, 2007, : 382 - 386
  • [4] Monolithically integrated interferometer for optical displacement measurement
    Hofstetter, D
    Zappe, HP
    FUNCTIONAL PHOTONIC AND FIBER DEVICES, 1996, 2695 : 380 - 391
  • [5] Dynamic displacement measurement beyond half-wavelength in phase-modulated optical interferometer
    Furukawa, Osamu
    Takemae, Shinya
    Tanaka, Yosuke
    JOURNAL OF THE OPTICAL SOCIETY OF AMERICA A-OPTICS IMAGE SCIENCE AND VISION, 2020, 37 (09) : B78 - B86
  • [6] SINUSOIDAL PHASE MODULATING INTERFEROMETER USING OPTICAL FIBERS FOR DISPLACEMENT MEASUREMENT
    SASAKI, O
    TAKAHASHI, K
    APPLIED OPTICS, 1988, 27 (19): : 4139 - 4142
  • [7] A laser displacement measurement interferometer with optical heterodyning
    Mirzaev, A. T.
    Vil'danov, R. R.
    Ismatov, M. S.
    Yakubov, A. N.
    Radioelectronics and Communications Systems, 38 (02):
  • [8] Absolute displacement measurement by using the synthesized modulation index of a frequency-modulated interferometer
    Chang, LW
    Lee, CT
    Chien, PY
    REVIEW OF SCIENTIFIC INSTRUMENTS, 1997, 68 (08): : 3085 - 3087
  • [9] Real-time measurement of microcantilever displacement based on Linnik microscopic speckle interferometer
    Gao, Chenjia
    Gao, Zhan
    Wang, Xu
    Liu, Zihui
    Zhong, Chugian
    Zhang, Yuan
    Liu, Yuchen
    OPTICAL ENGINEERING, 2018, 57 (12)
  • [10] Absolute distance measurement with an optical feedback interferometer
    Gouaux, F
    Servagent, N
    Bosch, T
    APPLIED OPTICS, 1998, 37 (28): : 6684 - 6689