We numerically investigate the band structure and guided modes within arrays of metallic nanowires. We show that bandgaps appear for a range of array geometries and that these can be used to guide light in these structures. Values of attenuation as low as 1.7 dB/cm are predicted for arrays of silver wires at communications wavelengths. This is more than 100 times smaller than the attenuation of the surface plasmon polariton modes on a single silver nanowire. (c) 2007 Optical Society of America
We propose the inclusion of a structured pattern of nanoscale metal wires in a silica fiber to form ...
International audienceIn this contribution, we numerically study the tip enhancement of localized su...
We show that metal nanowires sustaining collective electron oscillations (surface plasmon polaritons...
We numerically investigate the band structure and guided modes within arrays of metallic nanowires. ...
We study numerically the formation of photonic band gaps and guided "defect" modes within two dimens...
We discuss the characteristics of surface plasmon modes guided on metallic nanowires of circular cro...
Plasmonics is a rapidly developing field concerning light manipulation at the nanoscale with many po...
Abstract: We present results of transmission meas-urements and mode analysis for metal nanowire wave...
A kind of surface plasmon waveguide (SPW) formed from metal-dielectric-metal nanowire array is propo...
We propose a simple model to elucidate the dispersion behavior of spiraling modes on silver nanowire...
International audienceLight propagation in an integrated chain of metallic nanowires (MNW) is theore...
International audienceThe finite difference time domain method is employed to study the crystalline ...
Physical phenomena (optical, electronic and optoelectronic) occurring in metallic nanostructures off...
Thin metallic nanowires are highly promising candidates for plasmonic waveguides in photonic and ele...
Plasmons are collective oscillations of free electrons in a metal. At optical frequencies plasmons e...
We propose the inclusion of a structured pattern of nanoscale metal wires in a silica fiber to form ...
International audienceIn this contribution, we numerically study the tip enhancement of localized su...
We show that metal nanowires sustaining collective electron oscillations (surface plasmon polaritons...
We numerically investigate the band structure and guided modes within arrays of metallic nanowires. ...
We study numerically the formation of photonic band gaps and guided "defect" modes within two dimens...
We discuss the characteristics of surface plasmon modes guided on metallic nanowires of circular cro...
Plasmonics is a rapidly developing field concerning light manipulation at the nanoscale with many po...
Abstract: We present results of transmission meas-urements and mode analysis for metal nanowire wave...
A kind of surface plasmon waveguide (SPW) formed from metal-dielectric-metal nanowire array is propo...
We propose a simple model to elucidate the dispersion behavior of spiraling modes on silver nanowire...
International audienceLight propagation in an integrated chain of metallic nanowires (MNW) is theore...
International audienceThe finite difference time domain method is employed to study the crystalline ...
Physical phenomena (optical, electronic and optoelectronic) occurring in metallic nanostructures off...
Thin metallic nanowires are highly promising candidates for plasmonic waveguides in photonic and ele...
Plasmons are collective oscillations of free electrons in a metal. At optical frequencies plasmons e...
We propose the inclusion of a structured pattern of nanoscale metal wires in a silica fiber to form ...
International audienceIn this contribution, we numerically study the tip enhancement of localized su...
We show that metal nanowires sustaining collective electron oscillations (surface plasmon polaritons...