Spectral analysis of resonant transmission of light through a single sub-wavelength slit.
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A. Friberg | J. Lindberg | M. Kaivola | K. Lindfors | Jari Lindberg | K Lindfors | T Setälä | M Kaivola | A Friberg | T. Setälä
[1] F. García-Vidal,et al. Transmission Resonances on Metallic Gratings with Very Narrow Slits , 1999, cond-mat/9904365.
[2] D. Heitmann,et al. SURFACE-PLASMON-ENHANCED TRANSMISSION THROUGH METALLIC GRATINGS , 1998 .
[3] Daan Lenstra,et al. Creation and annihilation of phase singularities near a sub-wavelength slit. , 2003, Optics express.
[4] A. Zayats,et al. Near-field distribution of optical transmission of periodic subwavelength holes in a metal film. , 2001, Physical review letters.
[5] Günter Gauglitz,et al. Surface plasmon resonance sensors: review , 1999 .
[6] Anatoly V. Zayats,et al. Near-field photonics: surface plasmon polaritons and localized surface plasmons , 2003 .
[7] Stefan Enoch,et al. Theory of light transmission through subwavelength periodic hole arrays , 2000 .
[8] Adam D. McFarland,et al. Single Silver Nanoparticles as Real-Time Optical Sensors with Zeptomole Sensitivity , 2003 .
[9] I P Kaminow,et al. Metal-clad optical waveguides: analytical and experimental study. , 1974, Applied optics.
[10] P. D. Flammer,et al. Integral equations applied to wave propagation in two dimensions: modeling the tip of a near-field scanning optical microscope. , 2001, Journal of the Optical Society of America. A, Optics, image science, and vision.
[11] Fadi Issam Baida,et al. Enhanced confined light transmission by single subwavelength apertures in metallic films. , 2003, Applied optics.
[12] F. Pardo,et al. Strong discontinuities in the complex photonic band structure of transmission metallic gratings , 2001 .
[13] W. Fann,et al. Optical near field in nanometallic slits. , 2002, Optics express.
[14] Christopher Robert Lawrence,et al. Gratingless enhanced microwave transmission through a subwavelength aperture in a thick metal plate , 2002 .
[15] V. Sandoghdar,et al. A single gold particle as a probe for apertureless scanning near‐field optical microscopy , 2001, Journal of microscopy.
[16] R. W. Christy,et al. Optical Constants of the Noble Metals , 1972 .
[17] David R. Smith,et al. Local Refractive Index Dependence of Plasmon Resonance Spectra from Individual Nanoparticles , 2003 .
[18] R A Linke,et al. Enhanced light transmission through a single subwavelength aperture. , 2001, Optics letters.
[19] J. Pendry,et al. Theory of extraordinary optical transmission through subwavelength hole arrays. , 2000, Physical review letters.
[20] P. Lalanne,et al. One-mode model and Airy-like formulae for one-dimensional metallic gratings , 2000 .
[21] D. Lenstra,et al. Light transmission through a subwavelength slit and optical vortices , 2001 .
[22] J. Sambles,et al. Resonant transmission of microwaves through a narrow metallic slit. , 2002, Physical review letters.
[23] Reinecke Tl,et al. Boundary-element method for the calculation of electronic states in semiconductor nanostructures. , 1996 .
[24] W. Barnes,et al. Surface plasmon subwavelength optics , 2003, Nature.
[25] H. Lezec,et al. Multiple paths to enhance optical transmission through a single subwavelength slit. , 2003, Physical review letters.
[26] H. Lezec,et al. Extraordinary optical transmission through sub-wavelength hole arrays , 1998, Nature.