The distinctive ability of nanometallic structures to manipulate light at the nanoscale has recently promoted their use for a spectacular set of applications in a wide range of areas of research including artificial optical materials, nano-imaging, biosensing, and nonlinear optics. Here we transfer this concept to the terahertz spectral region, demonstrating a metal nanostructure in shape of a dipole nanoantenna, which can efficiently resonate at terahertz frequencies, showing an effective cross section >100 times larger than its geometrical area, and a field enhancement factor of ~280, confined on a lateral section of ~λ/1,000. These results lead to immediate applications in terahertz artificial materials exhibiting giant dichroism, sugges...
We demonstrate a silicon-based, single-layer anti-reflection coating that suppresses the reflectivit...
We demonstrate a silicon-based, single-layer anti-reflection coating that suppresses the reflectivit...
Artificial magnetism enables various transformative optical phenomena, including negative refraction...
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...
The distinctive ability of nanometallic structures to manipulate light at the nanoscale has recently...
We introduce an approach to implement full coherent control on nanometer length scales. It is based ...
Terahertz spectroscopy has great potential for sensing a wide range of elementary excitations. Howev...
We introduce an approach to implement full coherent control on nanometer length scales. It is based ...
Nanophotonics is a rapidly developing field, which aims to control light-matter interaction at the n...
An optical dipole nano-antenna can be constructed by placing a sub-wavelength dielectric (e.g., air...
Advanced nanophotonics penetrates into other areas of science and technology, ranging from applied p...
We demonstrate a silicon-based, single-layer anti-reflection coating that suppresses the reflectivit...
We demonstrate a silicon-based, single-layer anti-reflection coating that suppresses the reflectivit...
Artificial magnetism enables various transformative optical phenomena, including negative refraction...
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...
The distinctive ability of nanometallic structures to manipulate light at the nanoscale has recently...
We introduce an approach to implement full coherent control on nanometer length scales. It is based ...
Terahertz spectroscopy has great potential for sensing a wide range of elementary excitations. Howev...
We introduce an approach to implement full coherent control on nanometer length scales. It is based ...
Nanophotonics is a rapidly developing field, which aims to control light-matter interaction at the n...
An optical dipole nano-antenna can be constructed by placing a sub-wavelength dielectric (e.g., air...
Advanced nanophotonics penetrates into other areas of science and technology, ranging from applied p...
We demonstrate a silicon-based, single-layer anti-reflection coating that suppresses the reflectivit...
We demonstrate a silicon-based, single-layer anti-reflection coating that suppresses the reflectivit...
Artificial magnetism enables various transformative optical phenomena, including negative refraction...