• Acta Photonica Sinica
  • Vol. 47, Issue 2, 206001 (2018)
GE Xiaojia1、*, SHEN Yu2, SU Heming1, SHE Xuan1, and HU Huizhu1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • show less
    DOI: 10.3788/gzxb20184702.0206001 Cite this Article
    GE Xiaojia, SHEN Yu, SU Heming, SHE Xuan, HU Huizhu. Practical Sensing Chip Based on Optical Trap[J]. Acta Photonica Sinica, 2018, 47(2): 206001 Copy Citation Text show less
    References

    [1] LI Yinmei, GONG Lei, LI Di, et al. Progress in optical tweezers technology[J]. Chinese Journal of Lasers, 2015, 42(1): 0101001.

    [2] ASHKIN A. Acceleration and trapping of particles by radiation pressure[J]. Physical Review Letters, 1970, 24(4): 156159.

    [3] CONSTABLE A, KIM J, MERVIS J,et al. Demonstration of a fiberoptical lightforce trap[J]. Optics Letters, 1993, 18(21): 18671869.

    [4] LYONS E, SONEK G. Confinement and bistability in a tapered hemispherically lensed optical fiber trap[J]. Applied Physics Letters, 1995, 66(13): 15841586.

    [5] WANG Lei. The capture character and vibration sensor character research of optical fiber tweezers[D].Harbin: Harbin Engineering University,2011.

    [6] GHERARDI D, CARRUTHERS A, CˇIMR T, et al. A dual beam photonic crystal fiber trap for microscopic particles[J]. Applied Physics Letters, 2008, 93(4): 041110.

    [7] TAM J, BIRAN I, WALT D. An imaging fiberbased optical tweezer array for microparticle array assembly[J]. Applied Physics Letters, 2004, 84(21): 42894291.

    [8] ONO K, KANEDA S, SHIRAISHI T,et al. Optofluidic tweezer on a chip[J]. Biomicrofluidics, 2010, 4(4): 43012.

    [9] VOLPE G, SINGH G, PETROV D. Optical tweezers with cylindrical vector beams produced by optical fibers[C]. SPIE, 2004: 283292.

    [10] METZGER N, WRIGHT E, SIBBETT W, et al. Visualization of optical binding of microparticles using a femtosecond fiber optical trap[J]. Optics Express, 2006, 14(8): 36773687.

    [11] LINCOLN B, SCHINKINGER S, TRAVIS K, et al. Reconfigurable microfluidic integration of a dualbeam laser trap with biomedical applications[J]. Biomedical Microdevices, 2007, 9(5): 703710.

    [12] LIU Y, YU M. Optical manipulation and binding of microrods with multiple traps enabled in an inclined dualfiber system[J]. Biomicrofluidics, 2010,4(4): 43010.

    [13] JESS P, GARCSCHVEZ V, SMITH D, et al. Dual beam fibre trap for Raman microspectroscopy of single cells[J]. Optics Express, 2006, 14(12): 57795791.

    [14] RUDD D, LOPEZMARISCAL C, SUMMERS M,et al. Fiber based optical trapping of aerosols[J]. Optics Express, 2008, 16(19): 1455014560.

    [15] CHEN J, HU H, SHEN Y. Multistability in dualfiber optical trap[C]. SOPO, 2009: 14.

    [16] JENSENMCMULLIN C, LEE H, EDWARD R. Demonstration of trapping, motion control, sensing and fluorescence detection of polystyrene beads in a multifiber optical trap[J]. Optics Express, 2005, 13(7): 2634 2642.

    [17] CHEN Hongtao, LI Yinmei, LOU Liren, et al. Detection of nanometer displacement in opticaltweezers and its related measuring errors[J]. Chinese Journal of Lasers, 2004, 31(6): 729734.

    [18] SHEN Yu, WANG Jianzhong, LUO Junyan, et al. Theory and simulation of accelerometer based on laser trapping[J]. Infrared and Laser Engineering, 2010, 39(3): 543548.

    [19] BARBOUR N. Inertial navigation sensors[R].NATO RTO Lecture RTOENSET116. [S.l.]: LowCost Navigation Sensors and Integration Technology, 2010: 2527.

    [20] GIESELER J, NOVOTNY L, QUIDANT R. Thermal nonlinearities in a nanomechanical oscillator[J]. Nature Physics, 2013, 9(12): 806810.

    [21] IMBODEN M, MOHANTY P. Dissipation in nanoelectromechanical systems[J].Physics Reports, 2014, 534(3): 89146.

    [22] SU H, HU H, ZHANG L, et al. A chip of fiber optical trap[C]. SPIE, 2016, 10154: 101540C.

    [23] LI Z, SHEN Y, HU H, et al. Simulation and measurement of stiffness for dual beam laser trap using residual gravity method[J]. International Journal of Nanotechnology, 2015, 12(1012): 849859.

    [24] ARVANITAKI A, GERACI A. Detecting highfrequency gravitational waves with optically levitated sensors[J]. Physical Review Letters, 2013, 110(7): 071105.

    [25] CHANG D, REGAL C, PAPP S, et al. Cavity optomechanics using an optically levitated nanosphere[J]. Proceedings of the National Academy of Sciences of the United States of America, 2010, 107(3): 10051010.

    [26] ROMEROISART O, JUAN M, QUIDANT R, et al. Toward quantum superposition of living organisms[J]. New Journal of Physics, 2010, 12: 033015.

    [27] GIESELER J, QUIDANT R, DELLAGO C,et al. Dynamic relaxation of a levitated nanoparticle from a nonequilibrium steady state[J]. Nature Nanotechnology, 2014, 9(5): 358364.

    [28] RANJIT G, ATHERTON D, STUTZ J, et al. Attonewton force detection using microspheres in a dualbeam optical trap in high vacuum[J]. Physical Review A, 2015, 91(5).

    [29] LI T, KHEIFETS S, MEDELLIN D,et al. Measurement of the instantaneous velocity of a brownian particle[J]. Science, 2010, 328(5986): 16731675.

    [30] ASHKINA. Forces of a singlebeam gradient laser trap on a dielectric sphere in the ray optics regime[J]. Biophysical Journal, 1992, 61(2): 569582.

    [31] LI W, HU H, SU H, et al. Dynamic analysis of trapping and escaping in dual beam optical trap[C]. SPIE, 2016, 10154: 1015415.

    GE Xiaojia, SHEN Yu, SU Heming, SHE Xuan, HU Huizhu. Practical Sensing Chip Based on Optical Trap[J]. Acta Photonica Sinica, 2018, 47(2): 206001
    Download Citation