In this paper, the optimum behaviour of optical nanoantennas, in terms of impedance, directivity, available power, and field enhancement, at a resonance frequency of about 350 THz, will be shown. Optimum configurations are obtained by varying nanoantennas geometry in order to maximize the available power, enhancing the electric field in gap proximity and so the absorptivity. Moreover, the simulation results for aluminum nanoantennas on a three-layers substrate, will be reported, and a trade-off performance comparison among different antennas will be discussed. This study can guide both the engineering and the fabrication of plasmonic nanoantennas
The research area of plasmonics promises devices with ultrasmall footprint operating at ultrafast sp...
The research area of plasmonics promises devices with ultrasmall footprint operating at ultrafast sp...
Optical nanoantennas have been of great interest recently due to their ability to support a highly e...
In this paper, the optimum behaviour of optical nanoantennas, in terms of impedance, directivity, av...
In this paper, for the first time, an investigation in terms of efficiency of an energy harvester ba...
In this paper, for the first time, an investigation in terms of efficiency of an energy harvester ba...
We present a comparative study of nanoantennas for maximum power enhancements at their feed gaps. Du...
The purpose of this study is to outline the main guidelines for the design of arrays of optical rect...
The purpose of this study is to outline the main guidelines for the design of arrays of optical rect...
In this paper, the results of a geometric investigation of plasmonic nanoantennas for energy harves...
In this paper, the results of a geometric investigation of plasmonic nanoantennas for energy harves...
Optical nanoantennas have been of great interest recently due to their ability to support a highly ...
Optical nanoantennas have been of great interest recently due to their ability to support a highly ...
In this chapter, novel designs of tapered-dipole nanoantennas are investigated for energy harvesting...
The research area of plasmonics promises devices with ultrasmall footprint operating at ultrafast sp...
The research area of plasmonics promises devices with ultrasmall footprint operating at ultrafast sp...
The research area of plasmonics promises devices with ultrasmall footprint operating at ultrafast sp...
Optical nanoantennas have been of great interest recently due to their ability to support a highly e...
In this paper, the optimum behaviour of optical nanoantennas, in terms of impedance, directivity, av...
In this paper, for the first time, an investigation in terms of efficiency of an energy harvester ba...
In this paper, for the first time, an investigation in terms of efficiency of an energy harvester ba...
We present a comparative study of nanoantennas for maximum power enhancements at their feed gaps. Du...
The purpose of this study is to outline the main guidelines for the design of arrays of optical rect...
The purpose of this study is to outline the main guidelines for the design of arrays of optical rect...
In this paper, the results of a geometric investigation of plasmonic nanoantennas for energy harves...
In this paper, the results of a geometric investigation of plasmonic nanoantennas for energy harves...
Optical nanoantennas have been of great interest recently due to their ability to support a highly ...
Optical nanoantennas have been of great interest recently due to their ability to support a highly ...
In this chapter, novel designs of tapered-dipole nanoantennas are investigated for energy harvesting...
The research area of plasmonics promises devices with ultrasmall footprint operating at ultrafast sp...
The research area of plasmonics promises devices with ultrasmall footprint operating at ultrafast sp...
The research area of plasmonics promises devices with ultrasmall footprint operating at ultrafast sp...
Optical nanoantennas have been of great interest recently due to their ability to support a highly e...