• Photonics Research
  • Vol. 6, Issue 10, 981 (2018)
Xue Han1, Viet Giang Truong1、*, Prince Sunil Thomas1、3, and Síle Nic Chormaic1、2
Author Affiliations
  • 1Light-Matter Interactions Unit, Okinawa Institute of Science and Technology Graduate University, Onna, Okinawa 904-0495, Japan
  • 2Université Grenoble Alpes, CNRS, Grenoble INP, Institut Néel, 38000 Grenoble, France
  • 3Current address: Advanced Optical Imaging Group, School of Physics, University College Dublin, Ireland
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    DOI: 10.1364/PRJ.6.000981 Cite this Article Set citation alerts
    Xue Han, Viet Giang Truong, Prince Sunil Thomas, Síle Nic Chormaic. Sequential trapping of single nanoparticles using a gold plasmonic nanohole array[J]. Photonics Research, 2018, 6(10): 981 Copy Citation Text show less
    References

    [1] M. L. Juan, M. Righini, R. Quidant. Plasmon nano-optical tweezers. Nat. Photonics, 5, 349-356(2011).

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

    [3] K. Y. Chen, A. T. Lee, C. C. Hung, J. S. Huang, Y. T. Yang. Transport and trapping in two-dimensional nanoscale plasmonic optical lattice. Nano Lett., 13, 4118-4122(2013).

    [4] A. N. Grigorenko, N. W. Roberts, M. R. Dickinson, Y. Zhang. Nanometric optical tweezers based on nanostructured substrates. Nat. Photonics, 2, 365-370(2008).

    [5] Y. Tanaka, K. Sasaki. Efficient optical trapping using small arrays of plasmonic nanoblock pairs. Appl. Phys. Lett., 100, 021102(2012).

    [6] B. J. Roxworthy, K. D. Ko, A. Kumar, K. H. Fung, E. K. Chow, G. L. Liu, N. X. Fang, K. C. Toussaint. Application of plasmonic bowtie nanoantenna arrays for optical trapping, stacking, and sorting. Nano Lett., 12, 796-801(2012).

    [7] M. Daly, M. Sergides, S. Nic Chormaic. Optical trapping and manipulation of micrometer and submicrometer particles. Laser Photon. Rev., 9, 309-329(2015).

    [8] J. Berthelot, S. S. Acimovic, M. L. Juan, M. P. Kreuzer, J. Renger, R. Quidant. Three-dimensional manipulation with scanning near-field optical nanotweezers. Nat. Nanotechnol., 9, 295-299(2014).

    [9] A. Kotnala, R. Gordon. Quantification of high-efficiency trapping of nanoparticles in a double nanohole optical tweezer. Nano Lett., 14, 853-856(2014).

    [10] Y. Tsuboi, T. Shoji, N. Kitamura, M. Takase, K. Murakoshi, Y. Mizumoto, H. Ishihara. Optical trapping of quantum dots based on gap-mode-excitation of localized surface plasmon. J. Phys. Chem. Lett., 1, 2327-2333(2010).

    [11] Y. Pang, R. Gordon. Optical trapping of a single protein. Nano Lett., 12, 402-406(2012).

    [12] M. Righini, P. Ghenuche, S. Cherukulappurath, V. Myroshnychenko, F. J. G. de Abajo, R. Quidant. Nano-optical trapping of Rayleigh particles and Escherichia coli bacteria with resonant optical antennas. Nano Lett., 9, 3387-3391(2009).

    [13] O. M. Marago, P. H. Jones, P. G. Gucciardi, G. Volpe, A. C. Ferrari. Optical trapping and manipulation of nanostructures. Nat. Nanotechnol., 8, 807-819(2013).

    [14] M. B. Wabuyele, T. Vo-Dinh. Detection of human immunodeficiency virus type 1 DNA sequence using plasmonics nanoprobes. Anal. Chem., 77, 7810-7815(2005).

    [15] M. Schena, D. Shalon, R. W. Davis, P. O. Brown. Quantitative monitoring of gene expression patterns with a complementary DNA microarray. Science, 270, 467-470(1995).

    [16] M. A. Cooper. Optical biosensors in drug discovery. Nat. Rev. Drug Discov., 1, 515-528(2002).

    [17] P. N. Prasad. Introduction to Biophotonics(2003).

    [18] A. A. Saleh, J. A. Dionne. Toward efficient optical trapping of sub-10-nm particles with coaxial plasmonic apertures. Nano Lett., 12, 5581-5586(2012).

    [19] K. Wang, K. B. Crozier. Plasmonic trapping with a gold nanopillar. Chem. Phys. Chem., 13, 2639-2648(2012).

    [20] M. Sergides, V. G. Truong, S. Nic Chormaic. Highly tunable plasmonic nanoring arrays for nanoparticle manipulation and detection. Nanotechnology, 27, 365301(2016).

    [21] F. Hao, E. M. Larsson, T. A. Ali, D. S. Sutherland, P. Nordlander. Shedding light on dark plasmons in gold nanorings. Chem. Phys. Lett., 458, 262-266(2008).

    [22]

    [23] K. Wang, E. Schonbrun, P. Steinvurzel, K. B. Crozier. Trapping and rotating nanoparticles using a plasmonic nano-tweezer with an integrated heat sink. Nat. Commun., 2, 469(2011).

    [24] R. A. Jensen, I. C. Huang, O. Chen, J. T. Choy, T. S. Bischof, M. Lončar, M. G. Bawendi. Optical trapping and two-photon excitation of colloidal quantum dots using bowtie apertures. ACS Photon., 3, 423-427(2016).

    [25] A. Zehtabi-Oskuie, H. Jiang, B. R. Cyr, D. W. Rennehan, A. A. Al-Balushi, R. Gordon. Double nanohole optical trapping: dynamics and protein-antibody co-trapping. Lab Chip, 13, 2563-2568(2013).

    [26] A. H. J. Yang, T. Lerdsuchatawanich, D. Erickson. Forces and transport velocities for a particle in a slot waveguide. Nano Lett., 9, 1182-1188(2009).

    [27] L. Wang, Y. Cao, T. Zhu, R. Feng, F. Sun, W. Ding. Optical trapping of nanoparticles with tunable inter-distance using a multimode slot cavity. Opt. Express, 25, 29761-29768(2017).

    [28] C. Genet, T. W. Ebbesen. Light in tiny holes. Nature, 445, 39-46(2007).

    [29] S. Yokogawa, S. P. Burgos, H. A. Atwater. Plasmonic color filters for CMOS image sensor applications. Nano Lett., 12, 4349-4354(2012).

    [30] A. J. Goldman, R. G. Cox, H. Brenner. Slow viscous motion of a sphere parallel to a plane wall. I. Motion through a quiescent fluid. Chem. Eng. Sci., 22, 637-651(1967).

    [31] J. Happel, H. Brener. Low Reynolds Number Hydrodynamics: With Special Applications to Particulate Media(1983).

    [32] A. Rohrbach. Stiffness of optical traps: quantitative agreement between experiment and electromagnetic theory. Phys. Rev. Lett., 95, 168102(2005).

    [33] D. I. Yakubovsky, A. V. Arsenin, Y. V. Stebunov, D. Y. Fedyanin, V. S. Volkov. Optical constants and structural properties of thin gold films. Opt. Express, 25, 25574-25587(2017).

    [34] P. N. Melentiev, A. E. Afanasiev, A. A. Kuzin, A. S. Baturin, V. I. Balykin. Giant optical nonlinearity of a single plasmonic nanostructure. Opt. Express, 21, 13896-13905(2013).

    [35] P. Mestres, J. Berthelot, S. S. Acimovic, R. Quidant. Unraveling the optomechanical nature of plasmonic trapping. Light Sci. Appl., 5, e16092(2016).

    [36] L. Neumeier, R. Quidant, D. E. Chang. Self-induced back-action optical trapping in nanophotonic systems. New J. Phys., 17, 123008(2015).

    [37] X. Han, V. G. Truong, S. Nic Chormaic. Efficient microparticle trapping with plasmonic annular apertures arrays. Nano Futures, 2, 035007(2018).

    Xue Han, Viet Giang Truong, Prince Sunil Thomas, Síle Nic Chormaic. Sequential trapping of single nanoparticles using a gold plasmonic nanohole array[J]. Photonics Research, 2018, 6(10): 981
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