We theoretically and numerically study the design of optical lumped nanofiltering devices in the framework of our recently proposed paradigm for optical nanocircuits. In particular, we present a design of basic filtering elements, such as low-pass, pass-band, stop-band, and high-pass lumped nanofilters, for use in optical nanocircuits together with more complex designs, such as multizero or multipole nanofilters, to work at THz, infrared, and optical frequencies. Following the nanocircuit theory, we show how it is possible to design such complex frequency responses by applying simple rules, similar to those in rf circuit design, and we compare the frequency response of these optical nanofilters with classic filters in rf circuits. These f...
Metamaterials are known to demonstrate exotic electromagnetic and optical properties. The extra cont...
Frequency Selective Surfaces (FSS) are comprised of periodic, geometric, metallic patterns that act ...
The anomalous interaction of light with plasmonic materials has fascinated scientists and non-scient...
We theoretically and numerically study the design of optical lumped nanofiltering devices in the f...
Following our recent idea of using plasmonic and nonplasmonic nanoparticles as nanoinductors and nan...
Optical filters encompass a vast array of devices and structures for a wide variety of applications....
We present the concept of circuit nanoelements in the optical domain using plasmonic and nonplasmoni...
We theoretically introduced a design paradigm and tool by extending the circuit functionalities from...
Nanoantennas are key optical components that bridge nanometer-scale optical signals to far-field, fr...
We apply the optical nanocircuit concepts to model and design optical nanofilters in realistic plasm...
A form of optical circuitry is overviewed in which a tapestry of subwavelength nanometer-scale metam...
Optical nanocircuits may pave the way to transformative advancements in nanoscale communications. We...
We present here an analytical quasi-static circuit model for the coupling among small nanoparticles ...
Here we explore the radiation features of optical nanoantennas, analyzing the concepts of optical in...
In the last few years, the perfect absorption of light has become an important research topic due to...
Metamaterials are known to demonstrate exotic electromagnetic and optical properties. The extra cont...
Frequency Selective Surfaces (FSS) are comprised of periodic, geometric, metallic patterns that act ...
The anomalous interaction of light with plasmonic materials has fascinated scientists and non-scient...
We theoretically and numerically study the design of optical lumped nanofiltering devices in the f...
Following our recent idea of using plasmonic and nonplasmonic nanoparticles as nanoinductors and nan...
Optical filters encompass a vast array of devices and structures for a wide variety of applications....
We present the concept of circuit nanoelements in the optical domain using plasmonic and nonplasmoni...
We theoretically introduced a design paradigm and tool by extending the circuit functionalities from...
Nanoantennas are key optical components that bridge nanometer-scale optical signals to far-field, fr...
We apply the optical nanocircuit concepts to model and design optical nanofilters in realistic plasm...
A form of optical circuitry is overviewed in which a tapestry of subwavelength nanometer-scale metam...
Optical nanocircuits may pave the way to transformative advancements in nanoscale communications. We...
We present here an analytical quasi-static circuit model for the coupling among small nanoparticles ...
Here we explore the radiation features of optical nanoantennas, analyzing the concepts of optical in...
In the last few years, the perfect absorption of light has become an important research topic due to...
Metamaterials are known to demonstrate exotic electromagnetic and optical properties. The extra cont...
Frequency Selective Surfaces (FSS) are comprised of periodic, geometric, metallic patterns that act ...
The anomalous interaction of light with plasmonic materials has fascinated scientists and non-scient...