• Photonics Research
  • Vol. 3, Issue 6, 300 (2015)
Ting-Hui Xiao, Lin Gan, and Zhi-Yuan Li*
Author Affiliations
  • Laboratory of Optical Physics, Institute of Physics, Chinese Academy of Sciences, P.O. Box 603, Beijing 100190, China
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    DOI: 10.1364/PRJ.3.000300 Cite this Article Set citation alerts
    Ting-Hui Xiao, Lin Gan, Zhi-Yuan Li. Graphene surface plasmon polaritons transport on curved substrates[J]. Photonics Research, 2015, 3(6): 300 Copy Citation Text show less
    References

    [1] W. L. Barnes, A. Dereux, T. W. Ebbesen. Surface plasmon subwavelength optics. Nature, 424, 824-830(2003).

    [2] Y. G. Chen, Y. H. Chen, Z. Y. Li. Direct method to control surface plasmon polaritons on metal surfaces. Opt. Lett., 39, 339-342(2014).

    [3] Y.-H. Chen, L. Huang, L. Gan, Z.-Y. Li. Wavefront shaping of infrared light through a subwavelength hole. Light Sci. Appl., 1, e26(2012).

    [4] Y.-H. Chen, M. Zhang, L. Gan, X. Wu, L. Sun, J. Liu, J. Wang, Z.-Y. Li. Holographic plasmonic lenses for surface plasmons with complex wavefront profile. Opt. Express, 21, 17558-17566(2013).

    [5] S. Y. Liu, L. Huang, J. F. Li, C. Wang, Q. Li, H. X. Xu, H. L. Guo, Z. M. Meng, Z. Shi, Z. Y. Li. Simultaneous excitation and emission enhancement of fluorescence assisted by double plasmon modes of gold nanorods. J. Phys. Chem. C, 117, 10636-10642(2013).

    [6] Z. Y. Li. Optics and photonics at nanoscale: principles and perspectives. Europhys. Lett., 110, 14001(2015).

    [7] F. H. L. Koppens, D. E. Chang, F. J. G. de Abajo. Graphene plasmonics: a platform for strong light-matter interactions. Nano Lett., 11, 3370-3377(2011).

    [8] A. K. Geim, K. S. Novoselov. The rise of graphene. Nat. Mater., 6, 183-191(2007).

    [9] A. N. Grigorenko, M. Polini, K. S. Novoselov. Graphene plasmonics. Nat. Photonics, 6, 749-758(2012).

    [10] H. G. Yan, X. S. Li, B. Chandra, G. Tulevski, Y. Q. Wu, M. Freitag, W. J. Zhu, P. Avouris, F. N. Xia. Tunable infrared plasmonic devices using graphene/insulator stacks. Nat. Nanotechnol., 7, 330-334(2012).

    [11] L. Ju, B. S. Geng, J. Horng, C. Girit, M. Martin, Z. Hao, H. A. Bechtel, X. G. Liang, A. Zettl, Y. R. Shen, F. Wang. Graphene plasmonics for tunable terahertz metamaterials. Nat. Nanotechnol., 6, 630-634(2011).

    [12] W. B. Lu, W. Zhu, H. J. Xu, Z. H. Ni, Z. G. Dong, T. J. Cui. Flexible transformation plasmonics using graphene. Opt. Express, 21, 10475-10482(2013).

    [13] A. Vakil, N. Engheta. Transformation optics using graphene. Science, 332, 1291-1294(2011).

    [14] D. R. Andersen. Graphene-based long-wave infrared TM surface plasmon modulator. J. Opt. Soc. Am. B, 27, 818-823(2010).

    [15] L. Wu, H. S. Chu, W. S. Koh, E. P. Li. Highly sensitive graphene biosensors based on surface plasmon resonance. Opt. Express, 18, 14395-14400(2010).

    [16] Y. Yao, M. A. Kats, P. Genevet, N. F. Yu, Y. Song, J. Kong, F. Capasso. Broad electrical tuning of graphene-loaded plasmonic antennas. Nano Lett., 13, 1257-1264(2013).

    [17] K. S. Novoselov, V. I. Fal’ko, L. Colombo, P. R. Gellert, M. G. Schwab, K. Kim. A roadmap for graphene. Nature, 490, 192-200(2012).

    [18] S. Aksu, M. Huang, A. Artar, A. A. Yanik, S. Selvarasah, M. R. Dokmeci, H. Altug. Flexible plasmonics on unconventional and nonplanar substrates. Adv. Mater., 23, 4422-4430(2011).

    [19] X. L. Zhu, W. Yan, N. A. Mortensen, S. S. Xiao. Bends and splitters in graphene nanoribbon waveguides. Opt. Express, 21, 3486-3491(2013).

    [20] E. Forati, G. W. Hanson. Surface plasmon polaritons on soft-boundary graphene nanoribbons and their application in switching/demultiplexing. Appl. Phys. Lett., 103, 133104(2013).

    [21] V. P. Gusynin, S. G. Sharapov, J. P. Carbotte. Magneto-optical conductivity in graphene. J. Phys. Condens. Matter, 19, 026222(2007).

    [22] C. F. Chen, C. H. Park, B. W. Boudouris, J. Horng, B. S. Geng, C. Girit, A. Zettl, M. F. Crommie, R. A. Segalman, S. G. Louie, F. Wang. Controlling inelastic light scattering quantum pathways in graphene. Nature, 471, 617-620(2011).

    [23] X. Y. He, R. Li. Comparison of graphene-based transverse magnetic and electric surface plasmon modes. IEEE J. Sel. Top. Quantum Electron., 20, C1(2014).

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    Ting-Hui Xiao, Lin Gan, Zhi-Yuan Li. Graphene surface plasmon polaritons transport on curved substrates[J]. Photonics Research, 2015, 3(6): 300
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