In this work, we present a rigorous full-wave eigenanalysis for the study of nanoantennas operating at both terahertz (THz) (0.1–10 THz), and infrared/optical (10–750 THz) frequency spectrums. The key idea behind this effort is to reveal the physical characteristics of nanoantennas such that we can transfer and apply the state-of-the-art antenna design methodologies from microwaves to terahertz and optics. Extensive attention is given to penetration depth in metals to reveal whether the surface currents are sufficient for the correct characterization of nanoantennas, or the involvement of volume currents is needed. As we show with our analysis, the penetration depth constantly reduces until the region of 200 THz; beyond this point, it shoot...
Resonant dipole nanoantennas promise to considerably improve the capabilities of terahertz spectrosc...
Resonant dipole nanoantennas promise to considerably improve the capabilities of terahertz spectrosc...
Terahertz spectroscopy has great potential for sensing a wide range of elementary excitations. Howev...
The distinctive ability of nanometallic structures to manipulate light at the nanoscale has recently...
The distinctive ability of nanometallic structures to manipulate light at the nanoscale has recently...
The distinctive ability of nanometallic structures to manipulate light at the nanoscale has recently...
The distinctive ability of nanometallic structures to manipulate light at the nanoscale has recently...
The distinctive ability of nanometallic structures to manipulate light at the nanoscale has recently...
Nanoantennas have introduced wide bandwidth for fast data communications. The material properties of...
The terahertz regime has until recently been some what neglected due to the difficulty of generating...
We present a comparative study of nanoantennas for maximum power enhancements at their feed gaps. Du...
We explore conductivity of nanostructures in the terahertz range. We model the nanostructure as a sq...
We present a review of experimental studies of resonant excitation of terahertz surface plasmons in ...
Nanoantennas have introduced wide bandwidth for fast data communications. The material properties of...
We present computational analysis of nanoantenna arrays for imaging and sensing applications at opti...
Resonant dipole nanoantennas promise to considerably improve the capabilities of terahertz spectrosc...
Resonant dipole nanoantennas promise to considerably improve the capabilities of terahertz spectrosc...
Terahertz spectroscopy has great potential for sensing a wide range of elementary excitations. Howev...
The distinctive ability of nanometallic structures to manipulate light at the nanoscale has recently...
The distinctive ability of nanometallic structures to manipulate light at the nanoscale has recently...
The distinctive ability of nanometallic structures to manipulate light at the nanoscale has recently...
The distinctive ability of nanometallic structures to manipulate light at the nanoscale has recently...
The distinctive ability of nanometallic structures to manipulate light at the nanoscale has recently...
Nanoantennas have introduced wide bandwidth for fast data communications. The material properties of...
The terahertz regime has until recently been some what neglected due to the difficulty of generating...
We present a comparative study of nanoantennas for maximum power enhancements at their feed gaps. Du...
We explore conductivity of nanostructures in the terahertz range. We model the nanostructure as a sq...
We present a review of experimental studies of resonant excitation of terahertz surface plasmons in ...
Nanoantennas have introduced wide bandwidth for fast data communications. The material properties of...
We present computational analysis of nanoantenna arrays for imaging and sensing applications at opti...
Resonant dipole nanoantennas promise to considerably improve the capabilities of terahertz spectrosc...
Resonant dipole nanoantennas promise to considerably improve the capabilities of terahertz spectrosc...
Terahertz spectroscopy has great potential for sensing a wide range of elementary excitations. Howev...