Open Access
Issue |
J. Eur. Opt. Soc.-Rapid Publ.
Volume 8, 2013
|
|
---|---|---|
Article Number | 13015 | |
Number of page(s) | 6 | |
DOI | https://doi.org/10.2971/jeos.2013.13015 | |
Published online | 19 February 2013 |
- T. W. Ebbesen, H. J. Lezec, H. F. Ghaemi, T. Thio, and P. A. Wolff, “Extraordinary optical transmission through sub-wavelength hole arrays,” Nature 391, 667–669 (1998). [Google Scholar]
- L. Martín-Moreno, F. J. García-Vidal, H. J. Lezec, K. M. Pellerin, T. Thio, J. B. Pendry, and T. W. Ebbesen, “Theory of Extraordinary Optical Transmission through Subwavelength Hole Arrays,” Phys. Rev. Lett. 86, 1114–1117 (2001). [CrossRef] [Google Scholar]
- E. Popov, M. Nevière, J. Wenger, P.-F. Lenne, H. Rigneault, P. Chaumet, N. Bonod, J. Dintinger, and T. Ebbesen, “Field enhancement in single subwavelength apertures,” J. Opt. Soc. Am. A 23, 2342–2348 (2006). [CrossRef] [Google Scholar]
- Y. Jourlin, S. Tonchev, A. V. Tishchenko, C. Pedri, C. Veillas, O. Parriaux, A. Last, and Y. Lacroute, “Spatially and polarization resolved plasmon mediated transmission through continuous metal films,” Opt. Express 17, 12155–12166 (2009). [NASA ADS] [CrossRef] [Google Scholar]
- N. Bonod, S. Enoch, L. Li, P. Evgeny, and M. Neviere, “Resonant optical transmission through thin metallic films with and without holes,” Opt. Express 11, 482–490 (2003). [NASA ADS] [CrossRef] [Google Scholar]
- A. Giannattasio, I. Hooper, and W. Barnes, “Transmission of light through thin silver films via surface plasmon-polaritons,” Opt. Express 12, 5881–5886 (2004). [NASA ADS] [CrossRef] [Google Scholar]
- S. Wedge, and W. Barnes, “Surface plasmon-polariton mediated light emission through thin metal films,” Opt. Express 12, 3673–3685 (2004). [NASA ADS] [CrossRef] [Google Scholar]
- I. Avrutsky, Y. Zhao, and V. Kochergin, “Surface-plasmon-assisted resonant tunneling of light through a periodically corrugated thin metal film,” Opt. Lett. 25, 595–597 (2000). [NASA ADS] [CrossRef] [Google Scholar]
- H. Raether, Surface plasmons on smooth and rough surfaces and on gratings (Springer, New York, 1988). [Google Scholar]
- M. T. Gale, “Zero Order Grating Microstructures,” in Optical Document Security, R. L. Van Renesse, ed., 267–288 (second edition, Artech House, Boston/London, 1998). [Google Scholar]
- P. Berini, “Long-range surface plasmon polaritons,” Adv. Opt. Photon. 1, 484–588 (2009). [NASA ADS] [CrossRef] [Google Scholar]
- P. Berini, “Plasmon polariton modes guided by a metal film of finite width,” Opt. Lett. 24, 1011–1013 (1999). [NASA ADS] [CrossRef] [Google Scholar]
- N. Lyndin, MC GRATING (MC Grating software Development Company, 2012). [Google Scholar]
- M. T. Gale, “Replicated Diffractive Optics and Micro-Optics,” Opt. Photon. News 14, 24–29 (2003). [CrossRef] [Google Scholar]
- M. T. Gale, “Replication techniques for diffractive optical elements,” Microelectronic Engineering 34, 321–339 (1997). [CrossRef] [Google Scholar]
- S. Palmer, and L. Erwin, Diffraction Gratings Handbook (6th edition, Richardson Grating/a Newport corporation brand, 2005). [Google Scholar]
- J. Sauvage-Vincent, Y. Jourlin, S. Tonchev, C. Veillas, P. Claude, and O. Parriaux, “Industrial fabrication of an optical security device for document protection using plasmon resonant transmission through a thin corrugated metallic film embedded on a plastic foil,” Proc. SPIE 8428, Micro-Optics 2012, 84280F–84280F (2012). [NASA ADS] [CrossRef] [Google Scholar]
- N. Kaiser, “Review of the Fundamentals of Thin-Film Growth,” Appl. Opt. 41, 3053–3060 (2002). [NASA ADS] [CrossRef] [Google Scholar]
- O. Parriaux, S. Tonchev, and Y. Jourlin, “Recovery of lost photons in plasmon-mediated transmission through undulated metal film,” in Proceedings to ECIO 2012, 16th European Conference on Integrated Optics, (CIRSE, Barcelona, 2012). [Google Scholar]
- P. Berini, R. Charbonneau, N. Lahoud, and G. Mattiussi, “Characterization of long-range surface-plasmon-polariton waveguides,” J. Appl. Phys. 98, 043109 (2005). [NASA ADS] [CrossRef] [Google Scholar]
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