Photonic Sensors, Volume. 12, Issue 2, 105(2022)

Dynamic Analysis and Simulation of an Optically Levitated Rotating Ellipsoid Rotor in Liquid Medium

Qi ZHU1, Nan LI1, Heming SU1, Wenqiang LI1, and Huizhu HU1,2、*
Author Affiliations
  • 1State Key Laboratory of Modern Optical Instrumentation, College of Optical Science and Engineering, Zhejiang University, Hangzhou 310027, China
  • 2Quantum Sensing Center, Zhejiang Lab, Hangzhou 310000, China
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    References(29)

    [1] [1] A. Ashkin and J. M. Dziedzic, “Feedback stabilization of optically levitated particles,” Applied Physics Letters, 1977, 30(4): 202–204.

    [2] [2] A. La Porta and M. D. Wang, “Optical torque wrench: angular trapping, rotation, and torque detection of quartz microparticles,” Physical Review Letters, 2004, 92(19): 190801.

    [3] [3] M. E. J. Friese, T. A. Nieminen, N. R. Heckenberg, and H. Rubinsztein-Dunlop, “Optical torque controlled by elliptical polarization,” Optics Letters, 1998, 23(1): 1–3.

    [4] [4] S. Kuhn, B. A. Stickler, A. Kosloff, F. Patolsky, K. Hornberger, M. Arndt, et al., “Optically driven ultra-stable nanomechanical rotor,” Nature Communications, 2017, 8(1): 1–5.

    [5] [5] Y. Arita, J. M. Richards, M. Mazilu, G. C. Spalding, S. E. Skelton Spesyvtseva, D. Craig, et al., “Rotational dynamics and heating of trapped nanovaterite particles,” ACS Nano, 2016, 10(12): 11505–11510.

    [6] [6] E. Higurashi, R. Sawada, and T. Ito, “Optically induced angular alignment of trapped birefringent micro-objects by linearly polarized light,” Physical Review E, 1999, 59(3): 3676–3681.

    [7] [7] F. Monteiro, S. Ghosh, E. C. van Assendelft, and D. C. Moore, “Optical rotation of levitated spheres in high vacuum,” Physical Review A, 2018, 97(5): 051802.

    [8] [8] R. Reimann, M. Doderer, E. Hebestreit, R. Diehl, M. Frimmer, D. Windey, et al., “GHz rotation of an optically trapped nanoparticle in vacuum,” Physical Review Letters, 2018, 121(3): 033602.

    [9] [9] J. Ahn, Z. Xu, J. Bang, Y. H. Deng, T. M. Hoang, Q. Han, et al., “Optically levitated nanodumbbell torsion balance and GHz nanomechanical rotor,” Physical Review Letters, 2018, 121(3): 033603.

    [10] [10] P. Polimeno, A. Magazzù, M. AntoniaIatì, F. Patti, R. Saija, C. D. E. Boschi, et al., “Optical tweezers and their applications,” Journal of Quantitative Spectroscopy and Radiative Transfer, 2018, 218: 131–150.

    [11] [11] A. V. Arzola, P. Jákl, L. Chvátal, and P. Zemánek, “Rotation, oscillation and hydrodynamic synchronization of optically trapped oblate spheroidal microparticles,” Optics Express, 2014, 22(13): 16207–16221.

    [12] [12] K. Hein, T. Hucke, M. Stintz, and S. Ripperger, “Analysis of adhesion forces between particles and wall based on the vibration method,” Particle & Particle Systems Characterization, 2002, 19(4): 269–276.

    [13] [13] J. S. Bennett, L. J. Gibson, R. M. Kelly, E. Brousse, B. Baudisch, D. Preece, et al., “Spatially-resolved rotational microrheology with an optically-trapped sphere,” Scientific Reports, 2013, 3(1): 1–5.

    [14] [14] A. Raghu and S. Ananthamurthy “Optical tweezer for micro and nano scale rheology of biomaterials,” Indian Journal of Physics, 2010, 84(8): 1051–1061.

    [15] [15] T. A. Nieminen, A. I. Bishop, N. R. Heckenberg, and H. Rubinsztein-Dunlop, “Polarimetric measurement of optical torque,” in 7th Conference on Electromagnetic and Light Scattering by Nonspherical Particles: Theory, Measurements,and Applications, Bremen, 2011, pp. 267–270.

    [16] [16] W. Li, N. Li, Y. Shen, Z. Fu, H. Su, and H. Hu, “Dynamic analysis and rotation experiment of an optical-trapped microsphere in air,” Applied Optics, 2018, 57(4): 823–828.

    [17] [17] A. T. M. A. Rahman and P. F. Barker, “Laser refrigeration, alignment and rotation of levitated Yb3+: YLF nanocrystals,” Nature Photonics, 2017, 11(10): 634–638.

    [18] [18] J. W. Liaw, W. J. Lo, W. C. Lin, and M. K. Kuo, “Theoretical study of optical torques for aligning Ag nanorods and nanowires,” Journal of Quantitative Spectroscopy and Radiative Transfer, 2015, 162: 133–142.

    [19] [19] R. Ali, F. A. Pinheiro, R. S. Dutra, F. S. S. Rosa, and P. A. M. Neto, “Enantioselective manipulation of single chiral nanoparticles using optical tweezers,” Nanoscale, 2020, 12(8): 5031–5037.

    [20] [20] T. M. Hoang, Y. Ma, J. Ahn, J. Bang, F. Robicheaux, Z. Q. Yin, et al., “Torsional optomechanics of a levitated nonspherical nanoparticle,” Physical Review Letters, 2016, 117(12): 123604.

    [21] [21] S. Kuhn, A. Kosloff, B. A. Stickler, F. Patolsky, K. Hornberger, M. Arndt, et al., “Full rotational control of levitated silicon nanorods,” Optica, 2017, 4(3): 356–360.

    [22] [22] M. Rashid, M. Toro-, A. Setter, and H. Ulbricht, “Precession motion in levitated optomechanics,” Physical Review Letters, 2018, 121(25): 253601.

    [23] [23] J. Bang, T. Seberson, P. Ju, J. Ahn, Z. Xu, X. Gao, et al., “Five-dimensional cooling and nonlinear dynamics of an optically levitated nanodumbbell,” Physical Review Research, 2020, 2(4): 043054.

    [24] [24] A. A. M. Bui, A. B. Stilgoe, I. C. D. Lenton, L. J. Gibson, A. V. Kashchuk, S. Zhang, et al., “Theory and practice of simulation of optical tweezers,” Journal of Quantitative Spectroscopy & Radiative Transfer, 2017, 195: 66–75.

    [25] [25] M. E. J. Friese, T. A. Nieminen, N. R. Heckenberg, and H. Rubinsztein-Dunlop, “Optical alignment and spinning of laser-trapped microscopic particles,” Nature, 1998, 394(6691): 348–350.

    [26] [26] T. A. Nieminen, H. Rubinsztein-Dunlop, and N. R. Heckenberg, “Calculation and optical measurement of laser trapping forces on non-spherical particles,” Journal of Quantitative Spectroscopy & Radiative Transfer, 2001, 70(4–6): 627–637.

    [27] [27] F. van der Laan, R. Reimann, A. Militaru, F. Tebbenjohanns, D. Windey, M. Frimmer, et al., “Optically levitated rotor at its thermal limit of frequency stability,” Physical Review A, 2020, 102(1): 013505.

    [28] [28] M. Ivanov and D. Hanstorp, “Controlled spin of a nonbirefringent droplet trapped in an optical vortex beam,” Optics Communications, 2018, 427: 152–157.

    [29] [29] A. I. Bishop, T. A. Nieminen, N. R. Heckenberg, and H. Rubinsztein-Dunlop, “Optical microrheology using rotating laser-trapped particles,” Physical Review Letters, 2004, 92(19): 198104.

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    Qi ZHU, Nan LI, Heming SU, Wenqiang LI, Huizhu HU. Dynamic Analysis and Simulation of an Optically Levitated Rotating Ellipsoid Rotor in Liquid Medium[J]. Photonic Sensors, 2022, 12(2): 105

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    Paper Information

    Category: Regular

    Received: Mar. 22, 2021

    Accepted: Jun. 7, 2021

    Published Online: Jan. 10, 2022

    The Author Email: HU Huizhu (huhuizhu2000@zju.edu.cn)

    DOI:10.1007/s13320-021-0639-0

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