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86. R.F. Oulton, V.J. Sorger, D.A. Genov, D.F.P. Pile, X. Zhang, A hybrid plasmonic waveguide
for subwavelength confinement and long-range propagation. Nat. Photon. 2, 496–500 (2008)
87. R.F. Oulton, V.J. Sorger, T. Zentgraf, R.-M. Ma, C. Gladden, L. Dai, G. Bartal, X. Zhang,
Plasmon lasers at deep subwavelength scale. Nature 461, 629–632 (2009)
88. L. Lin, L. Liu, P. Peng, G. Zou, W.W. Duley, Y.N. Zhou, In situ nanojoining of Y-and T-shaped
silver nanowires structures using femtosecond laser radiation. Nanotechnology 27, 125201
(2016)
89. Y. Fang, Z. Li, Y. Huang, S. Zhang, P. Nordlander, N.J. Halas, H. Xu, Branched silver
nanowires as controllable plasmon routers. Nano Lett. 10, 1950–1954 (2010)
90. R. Yan, P. Pausauskie, J. Huang, P. Yang, Direct photonic–plasmonic coupling and routing in
single nanowires. Proc. Natl. Acad. Sci. 106, 21045 (2009)
91. A.D. Semenov, G.N. Goltsman, R. Sobolewski. Hot-electron effect in superconductors and
its applications for radiation sensors. Supercond. Sci. Technol. 15, R1–R16 (2002)
92. S. Link, M.A. El-Sayed, Spectral properties and relaxation dynamics of surface plasmon
electronic oscillations in gold and silver nanodots and nanorods. J. Phys. Chem. B 103,
8410–8426 (1999)
A. Hu et al.
67. S. Link, M.A. El-Sayed, Shape and size dependence of radiative, non-radiative and
photothermal properties of gold nanocrystals. Inte. Rev. Phys. Chem. 19, 409–453 (2000)
68. E. Petryayeva, U.J. Krull, Localized surface plasmon resonance: nanostructures, bioassays
and biosensing—A review. Anal. Chim. Acta 706, 8–24 (2011)
69. W.L. Barnes, A. Dereux, T.W. Ebbesen, Surface plasmon subwavelength optics. Nature 424,
824–830 (2003)
70. K. Welford, Surface plasmon-polaritons and their uses. Opt. Quant. Electron. 23, 1–27 (1991)
71. Y. Hong, Y.-M. Huh, D.S. Yoon, J. Yang, Nanobiosensors based on localized surface plasmon
resonance for biomarker detection. J. Nanomater. (2012)
72. A. Agrawal, S.H. Cho, O. Zandi, S. Ghosh, R.W. Johns, D.J. Milliron, Localized surface
plasmon resonance in semiconductor nanocrystals. Chem. Rev. 118, 3121–3207 (2018)
73. G. Mie, Beiträge zur Optik trüber Medien, speziell kolloidaler Metallösungen. Ann. Phys.
330, 377–445 (1908)
74. H. Yu, Y. Peng, Y. Yang, Z.-Y. Li, Plasmon-enhanced light–matter interactions and
applications. NPJ Comput. Mater. 5, 45 (2019)
75. X.-Y. Zhang, A. Hu, T. Zhang, W. Lei, X.-J. Xue, Y. Zhou, W.W. Duley, Self-assembly of
large-scale and ultrathin silver nanoplate films with tunable plasmon resonance properties.
ACS Nano 5, 9082–9092 (2011)
76. W. Zhou, A. Hu, S. Bai, Y. Ma, D. Bridges, Anisotropic optical properties of large-scale
aligned silver nanowire films via controlled coffee ring effects. RSC Adv. 5, 39103–39109
(2015)
77. D.K. Gramotnev, S.I. Bozhevolnyi, Plasmonics beyond the diffraction limit. Nat. Photon. 4,
83–91 (2010)
78. M. Born, E. Wolf, Principle of Optics, 7th edn (World Scientific, Cambridge, 1999)
79. L. Tong, F. Zi, X. Guo, J. Lou, Optical microfibers and nanofibers: a tutorial. Opt. Commun.
285, 4641–4647 (2012)
80. L. Tong, J. Lou, E. Mazur, Single-mode guiding properties of subwavelength-diameter silica
and silicon wire waveguides. Opt. Express 12, 1025–1035 (2004)
81. X. Guo, Y. Ma, Y. Wang, L. Tong, Nanowire plasmonic waveguides, circuits and devices.
Laser Photon. Rev. 7, 855–881 (2013)
82. Y. Fang, Z. Li, Y. Huang, S. Zhang, P. Nordlander, N.J. Halas, H. Xu, Branched silver
nanowires as controllable plasmon routers. Nano Lett. 10(5), 1950–1954 (2010)
83. J. Takahara, S. Yamagishi, H. Taki, A. Morimoto, T. Kobayashi, Guiding of a one-dimensional
optical beam with nanometer diameter. Opt. Lett. 22, 475–477 (1997)
84. H. Ditlbacher, A. Hohenau, D. Wagner, U. Kreibig, M. Rogers, F. Hofer, F.R. Aussenegg, J.R.
Krenn, Silver nanowires as surface plasmon resonators. Phys. Rev. Lett. 95, 257403 (2005)
85. A.W. Sanders, D.A. Routenberg, B.J. Wiley, Y. Xia, E.R. Dufresne, M.A. Reed, Observation
of plasmon propagation, redirection, and fan-out in silver nanowires. Nano Lett. 6, 1822–1826
(2006)
86. R.F. Oulton, V.J. Sorger, D.A. Genov, D.F.P. Pile, X. Zhang, A hybrid plasmonic waveguide
for subwavelength confinement and long-range propagation. Nat. Photon. 2, 496–500 (2008)
87. R.F. Oulton, V.J. Sorger, T. Zentgraf, R.-M. Ma, C. Gladden, L. Dai, G. Bartal, X. Zhang,
Plasmon lasers at deep subwavelength scale. Nature 461, 629–632 (2009)
88. L. Lin, L. Liu, P. Peng, G. Zou, W.W. Duley, Y.N. Zhou, In situ nanojoining of Y-and T-shaped
silver nanowires structures using femtosecond laser radiation. Nanotechnology 27, 125201
(2016)
89. Y. Fang, Z. Li, Y. Huang, S. Zhang, P. Nordlander, N.J. Halas, H. Xu, Branched silver
nanowires as controllable plasmon routers. Nano Lett. 10, 1950–1954 (2010)
90. R. Yan, P. Pausauskie, J. Huang, P. Yang, Direct photonic–plasmonic coupling and routing in
single nanowires. Proc. Natl. Acad. Sci. 106, 21045 (2009)
91. A.D. Semenov, G.N. Goltsman, R. Sobolewski. Hot-electron effect in superconductors and
its applications for radiation sensors. Supercond. Sci. Technol. 15, R1–R16 (2002)
92. S. Link, M.A. El-Sayed, Spectral properties and relaxation dynamics of surface plasmon
electronic oscillations in gold and silver nanodots and nanorods. J. Phys. Chem. B 103,
8410–8426 (1999)
