We propose a new design of optical nanoantennas and numerically study their optical properties. The nanoantennas are composed of two cylindrical metal nanorods stacked vertically with a circular dielectric disk spacer. Simulation results show that when the dielectric disk is less than 5nm in thickness, such nanoantennas exhibit two types of resonances: one corresponding to antenna resonance, the other corresponding to cavity resonances. The antenna resonance generates a peak in scattering spectra, while the cavity resonances lead to multiple dips in the scattering spectra. The cavity resonant frequency can be tuned by varying the size of the dielectric disk. The local field enhancement inside the cavity is maximized when the diameter of the...
ABSTRACT: We experimentally demonstrate a simple approach for surface current engineering in a cross...
We study in detail a novel type of optical nanoantennas made of high-permittivity low-loss dielectri...
On sub-wavelength scales, photon-matter interactions are limited by diffraction. Electromagnetic rad...
The authors fabricated two dimensional arrays of metal-dielectric-metal nanoantennas consisting of a...
Optical antennas are nanoscale metallic structures which act as effective receivers, transmitters an...
Manipulating light on the nanometer scale is a challenging topic not only from a fundamental point o...
Metallic nanosctructures possess electromagnetic properties useful for various applications, such as...
We study the light scattering and surface plasmon resonances of Au nanorods that are commonly used a...
Nanophotonics allows the manipulation of light on the subwavelength scale. Optical nanoantennas are ...
Analyses of the resonances of both symmetric and antisymmetric polarization states in pairs of tight...
Optical whispering gallery mode (WGM) biochemical sensors operate by tracking changes in resonant fr...
Devices possessing the ability to sense both electrically and optically molecular targets are of fun...
Surface plasmons are elementary excitations of the collective and coherent oscillations of conductiv...
Plasmonic nanoantennas are currently the subject of many theoretical and experimental investigations...
Paired metallic nanoparticles can show a strong optical resonance that depends strongly upon particl...
ABSTRACT: We experimentally demonstrate a simple approach for surface current engineering in a cross...
We study in detail a novel type of optical nanoantennas made of high-permittivity low-loss dielectri...
On sub-wavelength scales, photon-matter interactions are limited by diffraction. Electromagnetic rad...
The authors fabricated two dimensional arrays of metal-dielectric-metal nanoantennas consisting of a...
Optical antennas are nanoscale metallic structures which act as effective receivers, transmitters an...
Manipulating light on the nanometer scale is a challenging topic not only from a fundamental point o...
Metallic nanosctructures possess electromagnetic properties useful for various applications, such as...
We study the light scattering and surface plasmon resonances of Au nanorods that are commonly used a...
Nanophotonics allows the manipulation of light on the subwavelength scale. Optical nanoantennas are ...
Analyses of the resonances of both symmetric and antisymmetric polarization states in pairs of tight...
Optical whispering gallery mode (WGM) biochemical sensors operate by tracking changes in resonant fr...
Devices possessing the ability to sense both electrically and optically molecular targets are of fun...
Surface plasmons are elementary excitations of the collective and coherent oscillations of conductiv...
Plasmonic nanoantennas are currently the subject of many theoretical and experimental investigations...
Paired metallic nanoparticles can show a strong optical resonance that depends strongly upon particl...
ABSTRACT: We experimentally demonstrate a simple approach for surface current engineering in a cross...
We study in detail a novel type of optical nanoantennas made of high-permittivity low-loss dielectri...
On sub-wavelength scales, photon-matter interactions are limited by diffraction. Electromagnetic rad...