The major challenges in the study of light-matter interaction in the deep subwavelength regime are the inefficient conversion of nearfield to farfield energy, low signal-to-noise ratio, complicated device designs requiring complex multi-step fabrication processes. Metallic nanowires supporting surface plasmon polaritons (SPP) can localize optical fields at nanoscale tapered ends for near-field imaging. Similarly, epsilon-near-zero (ENZ) resonance, which is the behavior of light inside the medium with vanishing permittivity, in transparent conducting oxide thin films possesses strong light confinement properties. In addition, both SPP and ENZ resonances enhance the local density of optical states. Due to this property, dipole emitters near t...
Conventional optical fibers are well-known for their efficient light guiding mechanism. However, the...
We use SNOM-like optical fiber tips functionalized with plasmonic and metamaterial nanostructures to...
This research introduces a novel highly efficient method to interconnect two metallic nanostrips tha...
In free space, the diffraction limit sets a lower bound to the size to which light can be confined. ...
Nanophotonics is a booming field of research with the promise of chip-scale devices which harness th...
Electrically driven plasmonic nanostructures can generate and guide highly confined light. Light emi...
Achieving active tunability of light and matter interaction is of great interest as it opens a new a...
In this work, by using a broadspectrum angle-resolved absorption technique, we studied enhanced abso...
Epsilon-near-zero (ENZ) media are an emerging platform, embracing the great potential for novel nano...
In the past century, electric current dominated the field of information generation, transportation,...
Nanophotonics has greatly benefited from the unique ability of surface plasmons to confine optical mo...
Epsilon-near-zero (ENZ) materials, when probed at or near wavelengths corresponding to their zero pe...
Optical fibers play a significant role in various practical applications from long-distance optical ...
My PhD is focused on the design, fabrication and optoelectronic applications of epsilon-near-zero (...
The recent emergence of nanotechnology offers a new perspective in the field of optics. The study of...
Conventional optical fibers are well-known for their efficient light guiding mechanism. However, the...
We use SNOM-like optical fiber tips functionalized with plasmonic and metamaterial nanostructures to...
This research introduces a novel highly efficient method to interconnect two metallic nanostrips tha...
In free space, the diffraction limit sets a lower bound to the size to which light can be confined. ...
Nanophotonics is a booming field of research with the promise of chip-scale devices which harness th...
Electrically driven plasmonic nanostructures can generate and guide highly confined light. Light emi...
Achieving active tunability of light and matter interaction is of great interest as it opens a new a...
In this work, by using a broadspectrum angle-resolved absorption technique, we studied enhanced abso...
Epsilon-near-zero (ENZ) media are an emerging platform, embracing the great potential for novel nano...
In the past century, electric current dominated the field of information generation, transportation,...
Nanophotonics has greatly benefited from the unique ability of surface plasmons to confine optical mo...
Epsilon-near-zero (ENZ) materials, when probed at or near wavelengths corresponding to their zero pe...
Optical fibers play a significant role in various practical applications from long-distance optical ...
My PhD is focused on the design, fabrication and optoelectronic applications of epsilon-near-zero (...
The recent emergence of nanotechnology offers a new perspective in the field of optics. The study of...
Conventional optical fibers are well-known for their efficient light guiding mechanism. However, the...
We use SNOM-like optical fiber tips functionalized with plasmonic and metamaterial nanostructures to...
This research introduces a novel highly efficient method to interconnect two metallic nanostrips tha...