Photonics Research, Volume. 3, Issue 5, 265(2015)

Ray-optics model for optical force and torque on a spherical metal-coated Janus microparticle

Jing Liu1, Chao Zhang1, Yiwu Zong2, Honglian Guo1, and Zhi-Yuan Li1、*
Author Affiliations
  • 1Key Laboratory of Optical Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China
  • 2Key Laboratory of Soft Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China
  • show less
    References(29)

    [1] [1] H. L. Guo and Z. Y. Li, “Optical tweezers technique and its applications,” Sci. China Phys. Astro. & Mech. 56, 2351–2360 (2013).

    [2] [2] A. Ashkin, J. M. Dziedzic, J. E. Bjorkholm, and S. Chu, “Observation of a single-beam gradient force optical trap for dielectric particles,” Opt. Lett. 11, 288–290 (1986).

    [3] [3] M. D. Wang, H. Yin, R. Landick, J. Gelles, and S. M. Block, “Stretching DNA with optical tweezers,” Biophys. J. 72, 1335– 1346 (1997).

    [4] [4] E. Qu, H. L. Guo, C. H. Xu, Z. L. Li, M. Yuan, B. Y. Cheng, and D. Z. Zhang, “Kinetics of microtubule -AtMAP65-1 bond studied with dual-optical tweezers,” Jpn. J. Appl. Phys. 46, 7514–7518 (2007).

    [5] [5] A. K. Rai, A. Rai, A. J. Ramaiya, R. Jha, and R. Mallik, “Molecular adaptations allow dynein to generate large collective forces inside cells,” Cell 152, 172–182 (2013).

    [6] [6] J. C. Crocker and D. G. Grier, “Microscopic measurement of the pair interaction potential of charge-stabilized colloid,” Phys. Rev. Lett. 73, 352–355 (1994).

    [7] [7] G. M. Wang, E. M. Sevick, E. Mittag, D. J. Searles, and D. J. Evans, “Experimental demonstration of violations of the second law of thermodynamics for small systems and short time scales,” Phys. Rev. Lett. 89, 050601 (2002).

    [8] [8] J. K hler, R. Ghadiri, S. I. Ksouri, Q. Guo, E. L. Gurevich, and A. Ostendorf, “Generation of microfluidic flow using an optically assembled and magnetically driven microrotor,” J. Phys. D 47, 505501 (2014).

    [9] [9] G. B. Liao, P. B. Bareil, Y. L. Sheng, and A. Chiou, “Onedimensional jumping optical tweezers for optical stretching of bi-concave human red blood cells,” Opt. Express 16, 1996– 2004 (2008).

    [10] [10] S. Mohanty, “Optically-actuated translational and rotational motion at the microscale for microfluidic manipulation and characterization,” Lab Chip 12, 3624–3636 (2012).

    [11] [11] L. Lin, H. L. Guo, X. L. Zhong, L. Huang, J. F. Li, L. Gan, and Z. Y. Li, “Manipulation of gold nanorods with dual-optical tweezers for surface plasmon resonance control,” Nanotechnology 23, 215302 (2012).

    [12] [12] L. Huang, H. L. Guo, K. L. Li, Y. H. Chen, B. H. Feng, and Z. Y. Li, “Three dimensional force detection of gold nanoparticles using backscattered light detection,” J. Appl. Phys. 113, 113103 (2013).

    [13] [13] M. E. J. Friese, T. A. Nieminen, N. R. Heckenberg, and H. Rubinsztein-Dunlop, “Optical alignment and spinning of lasertrapped microscopic particles,” Nature 395, 621–635 (1998).

    [14] [14] N. J. Jenness, R. M. Erb, B. B. Yellen, and R. L. Clark, “Magnetic and optical manipulation of spherical metal-coated Janus particles,” Proc. SPIE 7762, 776227 (2010).

    [15] [15] H. Wang, S. Bhaskar, J. Lahann, and Y. G. Lee, “Optical trapping of Janus particles,” Proc. SPIE 7038, 703813 (2008).

    [16] [16] S. Nedev, S. Carretero-Palacios, P. Kühler, T. Lohmüller, A. S. Urban, L. J. E. Anderson, and J. Feldmann, “An optically controlled microscale elevator using plasmonic Janus particles,” ACS Photonics 2, 491–496 (2015).

    [17] [17] F. S. Merkt, A. Erbe, and P. Leiderer, “Capped colloids as lightmills in optical traps,” New J. Phys. 8, 216 (2006).

    [18] [18] L. Baraban, R. Streubel, D. Makarov, L. Han, D. Karnaushenko, O. G. Schmidt, and G. Cuniberti, “Fuel-free locomotion of Janus motors: magnetically induced thermophoresis,” ACS Nano 7, 1360–1367 (2013).

    [19] [19] M. Yoshida and J. Lahann, “Smart nanomaterials,” ACS Nano 2, 1101–1107 (2008).

    [20] [20] T. Nisisako, T. Torii, T. Takahashi, and Y. Takizawa, “Synthesis of monodisperse bicolored Janus particles with electrical anisotropy using a microfluidic co-flow system,” Adv. Mater. 18, 1152–1156 (2006).

    [21] [21] C. J. Behrend, J. N. Anker, B. H. McNaughton, and R. Kopelman, “Microrheology with modulated optical nanoprobes (MOONs),” J. Magn. Magn. Mater. 293, 663–670 (2005).

    [22] [22] D. A. White, “Vector finite element modeling of optical tweezers,” Comput. Phys. Comm. 128, 558–564 (2000).

    [23] [23] D. C. Benito, S. H. Simpson, and S. Hanna, “FDTD simulations of forces on particles during holographic assembly,” Opt. Express 16, 2942–2957 (2008).

    [24] [24] J. Q. Qin, X. L. Wang, D. Jia, J. Chen, Y. X. Fan, J. P. Ding, and H. T. Wang, “FDTD approach to optical forces of tightly focused vector beams on metal particles,” Opt. Express 17, 8407–8416 (2009).

    [25] [25] S. H. Simpson and S. Hanna, “Application of the discrete dipole approximation to optical trapping calculations of inhomogeneous and anisotropic particles,” Opt. Express 19, 16526–16541 (2011).

    [26] [26] L. Lin, F. Zhou, L. Huang, and Z. Y. Li, “Optical forces on arbitrary shaped particles in optical tweezers,” J. Appl. Phys. 108, 073110 (2010).

    [27] [27] F. Borghese, P. Denti, and R. Saija, “Radiation torque and force on optically trapped linear nanostructures,” Phys. Rev. Lett. 100, 163903 (2008).

    [28] [28] A. Ashkin, “Forces of a single-beam gradient laser trap on a dielectric sphere in the ray optics regime,” Biophys. J. 61, 569–582 (1992).

    [29] [29] M. Born and E. Wolf, Principles of Optics, 7th ed. (Cambridge University, 1999), pp. 54–59 and 628–633.

    CLP Journals

    [1] Mincheng Zhong, Ziqiang Wang, Yinmei Li, "Laser-accelerated self-assembly of colloidal particles at the water–air interface," Chin. Opt. Lett. 15, 051401 (2017)

    [2] Jing Liu, Zhi-Yuan Li, "Light-driven crystallization of polystyrene micro-spheres," Photonics Res. 5, 201 (2017)

    Tools

    Get Citation

    Copy Citation Text

    Jing Liu, Chao Zhang, Yiwu Zong, Honglian Guo, Zhi-Yuan Li, "Ray-optics model for optical force and torque on a spherical metal-coated Janus microparticle," Photonics Res. 3, 265 (2015)

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: Optical Manipulation

    Received: Jul. 9, 2015

    Accepted: Aug. 9, 2015

    Published Online: Jan. 6, 2016

    The Author Email: Zhi-Yuan Li (lizy@aphy.iphy.ac.cn)

    DOI:10.1364/prj.3.000265

    Topics