In general, noble metals based nano-antennas cannot work at high power applications such as heat resisted magnetic recording, solar thermo-photovoltaics, and nano-scale heat transfer systems. These antennas are prone to being damaged at sufficiently high energy density due to their small footprint and low Tamman temperature. This paper proposes tungsten refractory plasmonic material based nano-antennas as an alternative gold nano-antennas: we show that the antennas can handle 300 times higher fluence than gold (Au) counterpart. In addition, it can achieve 7.22 higher magnitude of electric field intensity than gold antennas
Surface plasmon-enhanced gold nanoantenna structures on glass substrate are studied for increased lo...
We demonstrate Purcell enhancements of-1000 from fluorescent molecules embedded in a plasmonic anten...
ABSTRACT: Optical antennas interface an object with optical radiation and boost the absorption and e...
Nano-antennas are replicas of antennas that operate at radio-frequencies, but with considerably smal...
Nano-antennas cannot handle high energy density (fluences) due to their small footprint. In this pap...
We report on the generation of extreme ultraviolet radiation utilizing the plasmonic field enhanceme...
In this paper, we show that titanium based nano-antennas can withstand considerably higher power (18...
While plasmonic nano-antennas can produce intense electric fields in a very small area, in general, ...
The plasmonic resonance of single metallic nano-aperture, which acts as an optical antenna, can impr...
Nano-plasmonic bow tie antennas are similar to other antennas except that, it is the size of nano an...
Many modern optical nano-devices rely on the excitation of surface plasmon polaritons or localized s...
Nano-antennas are the optical equivalent of antennas that are used to transmit and receive informati...
In recent years, a remarkable progress has been observed in the field of energy harvesting via nano-...
Pfullmann N, Noack M, de Andrade JC, et al. Nano-antennae assisted emission of extreme ultraviolet r...
By providing a connection between the freely propagating radiation and the localized energy, optical...
Surface plasmon-enhanced gold nanoantenna structures on glass substrate are studied for increased lo...
We demonstrate Purcell enhancements of-1000 from fluorescent molecules embedded in a plasmonic anten...
ABSTRACT: Optical antennas interface an object with optical radiation and boost the absorption and e...
Nano-antennas are replicas of antennas that operate at radio-frequencies, but with considerably smal...
Nano-antennas cannot handle high energy density (fluences) due to their small footprint. In this pap...
We report on the generation of extreme ultraviolet radiation utilizing the plasmonic field enhanceme...
In this paper, we show that titanium based nano-antennas can withstand considerably higher power (18...
While plasmonic nano-antennas can produce intense electric fields in a very small area, in general, ...
The plasmonic resonance of single metallic nano-aperture, which acts as an optical antenna, can impr...
Nano-plasmonic bow tie antennas are similar to other antennas except that, it is the size of nano an...
Many modern optical nano-devices rely on the excitation of surface plasmon polaritons or localized s...
Nano-antennas are the optical equivalent of antennas that are used to transmit and receive informati...
In recent years, a remarkable progress has been observed in the field of energy harvesting via nano-...
Pfullmann N, Noack M, de Andrade JC, et al. Nano-antennae assisted emission of extreme ultraviolet r...
By providing a connection between the freely propagating radiation and the localized energy, optical...
Surface plasmon-enhanced gold nanoantenna structures on glass substrate are studied for increased lo...
We demonstrate Purcell enhancements of-1000 from fluorescent molecules embedded in a plasmonic anten...
ABSTRACT: Optical antennas interface an object with optical radiation and boost the absorption and e...