• Acta Optica Sinica (Online)
  • Vol. 1, Issue 4, 0404001 (2024)
Haining Feng1,2, Shilong Jin1,2, Xinlin Chen1,2,*, Guofeng Li1,2..., Siyuan Rao1,2, Weiqing Zeng1,2, Wei Xiong1,2, Xiang Han1,2, Guangzong Xiao1,2 and Hui Luo1,2,**|Show fewer author(s)
Author Affiliations
  • 1College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, Hunan , China
  • 2Nanhu Laser Laboratory, National University of Defense Technology, Changsha 410073, Hunan , China
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    DOI: 10.3788/AOSOL240438 Cite this Article Set citation alerts
    Haining Feng, Shilong Jin, Xinlin Chen, Guofeng Li, Siyuan Rao, Weiqing Zeng, Wei Xiong, Xiang Han, Guangzong Xiao, Hui Luo. Charge Measurement of Levitated Microspheres in Optical Trap Chip (Invited)[J]. Acta Optica Sinica (Online), 2024, 1(4): 0404001 Copy Citation Text show less
    References

    [1] Touboul P, Rodrigues M. The MICROSCOPE space mission[J]. Classical and Quantum Gravity, 18, 2487-2498(2001).

    [2] Touboul P, Rodrigues M, Métris G et al. MICROSCOPE, testing the equivalence principle in space[J]. Comptes Rendus De L’Académie Des Sciences-Series IV - Physics, 2, 1271-1286(2001).

    [3] Zhang X, Gao W H, Yang B. Progress in research and application of charge measurement technology[J]. Physics Bulletin, 152-155(2024).

    [4] Zhang Z B, Ren M, Song B et al. Study on subsequent behaviors of partial discharge charges in polymers[J]. High Voltage Engineering, 48, 2215-2225(2022).

    [5] Feng H N, Jin S L, Chen X L et al. Customizable trajectory of trapped particle in quadruple-beam optical trap[J]. Optics Express, 30, 17221-17229(2022).

    [6] Kuang T F, Huang R, Xiong W et al. Nonlinear multi-frequency phonon lasers with active levitated optomechanics[J]. Nature Physics, 19, 414-419(2023).

    [7] Zhang H M, Xiong W, Han X et al. Research progress in levitated optomechanical sensing technology (invited)[J]. Infrared and Laser Engineering, 52, 20230193(2023).

    [8] Han X, Chen X L, Xiong W et al. Vaccum optical tweezers system and its research progress in precision measurement[J]. Chinese Journal of Lasers, 48, 0401011(2021).

    [9] Yan J W, Yu X D, Han Z V et al. On-demand assembly of optically levitated nanoparticle arrays in vacuum[J]. Photonics Research, 11, 600-608(2023).

    [10] Liang Y S, Yan S H, Wang Z J et al. Off-axis optical levitation and transverse spinning of metallic microparticles[J]. Photonics Research, 9, 2144-2151(2021).

    [11] Peng M, Xiao G Z, Chen X L et al. Optical trapping-enhanced probes designed by a deep learning approach[J]. Photonics Research, 12, 959-968(2024).

    [12] Wu Y X, Zhao S D, Dai G Z et al. Optical force-induced nanowire cut[J]. The Journal of Physical Chemistry Letters, 13, 11899-11904(2022).

    [13] Ju P, Jin Y B, Shen K H et al. Near-field GHz rotation and sensing with an optically levitated nanodumbbell[J]. Nano Letters, 23, 10157-10163(2023).

    [14] An S M, Zhang J N, Um M et al. Experimental test of the quantum Jarzynski equality with a trapped-ion system[J]. Nature Physics, 11, 193-199(2014).

    [15] Ranjit G, Cunningham M, Casey K et al. Zeptonewton force sensing with nanospheres in an optical lattice[J]. Physical Review A, 93, 053801(2016).

    [16] Hempston D, Vovrosh J, Toroš M et al. Force sensing with an optically levitated charged nanoparticle[J]. Applied Physics Letters, 111, 133111(2017).

    [17] Delić U, Reisenbauer M, Dare K H et al. Cooling of a levitated nanoparticle to the motional quantum ground state[J]. Science, 367, 892-895(2020).

    [18] Liang T, Zhu S C, He P T et al. Yoctonewton force detection based on optically levitated oscillator[J]. Fundamental Research, 3, 57-62(2023).

    [19] Han Z Y, Zhang L, Li X et al. Pure optical twist with zero net torque[J]. Optics Express, 32, 8484-8495(2024).

    [20] Geraci A, Goldman H. Sensing short range forces with a nanosphere matter-wave interferometer[J]. Physical Review D, 92, 062002(2015).

    [21] Monteiro F, Ghosh S, Fine A G et al. Optical levitation of 10-ng spheres with nano- g acceleration sensitivity[J]. Physical Review A, 96, 063841(2017).

    [22] Monteiro F, Li W Q, Afek G et al. Force and acceleration sensing with optically levitated nanogram masses at microkelvin temperatures[J]. Physical Review A, 101, 053835(2020).

    [23] Hebestreit E, Reimann R, Frimmer M et al. Measuring the internal temperature of a levitated nanoparticle in high vacuum[J]. Physical Review A, 97, 043803(2018).

    [24] Chaste J, Eichler A, Moser J et al. A nanomechanical mass sensor with yoctogram resolution[J]. Nature Nanotechnology, 7, 301-304(2012).

    [25] Blakemore C P, Rider A D, Roy S et al. Precision mass and density measurement of individual optically levitated microspheres[J]. Physical Review Applied, 12, 024037(2019).

    [26] Ricci F, Cuairan M T, Conangla G P et al. Accurate mass measurement of a levitated nanomechanical resonator for precision force-sensing[J]. Nano Letters, 19, 6711-6715(2019).

    [27] Zheng Y, Zhou L M, Dong Y et al. Robust optical-levitation-based metrology of nanoparticle’s position and mass[J]. Physical Review Letters, 124, 223603(2020).

    [28] Moore D C, Rider A D, Gratta G. Search for millicharged particles using optically levitated microspheres[J]. Physical Review Letters, 113, 251801(2014).

    [29] Zhu S C, Fu Z H, Gao X W et al. Nanoscale electric field sensing using a levitated nano-resonator with net charge[J]. Photonics Research, 11, 279-289(2023).

    [30] Wang J C, Li C H, Zhu S C et al. Rapid measurement of the net charge on nanoparticles in optical levitation system[J]. Applied Physics Express, 16, 066502(2023).

    [31] Bechhoefer J, Wilson S. Faster, cheaper, safer optical tweezers for the undergraduate laboratory[J]. American Journal of Physics, 70, 393-400(2002).

    [32] Chen H T, Li Y M, Lou L R et al. Experimental conditions dependence of trap stiffness in optical tweezers[J]. Chinese Journal of Lasers, 31, 1361-1366(2004).

    [33] Florin E L, Pralle A, Stelzer E H K et al. Photonic force microscope calibration by thermal noise analysis[J]. Applied Physics A, 66, S75-S78(1998).

    [34] Jákl P, Šerý M, Ježek J et al. Axial optical trap stiffness influenced by retro-reflected beam[J]. Journal of Optics A: Pure and Applied Optics, 9, S251-S255(2007).

    Haining Feng, Shilong Jin, Xinlin Chen, Guofeng Li, Siyuan Rao, Weiqing Zeng, Wei Xiong, Xiang Han, Guangzong Xiao, Hui Luo. Charge Measurement of Levitated Microspheres in Optical Trap Chip (Invited)[J]. Acta Optica Sinica (Online), 2024, 1(4): 0404001
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