In this paper, we propose a facile and large scale compatible design to obtain perfect ultrabroadband light absorption using metal-dielectric core-shell nanowires. The design consists of atomic layer deposited (ALD) Pt metal uniformly wrapped around hydrothermally grown titanium dioxide (TiO2) nanowires. It is found that the randomly oriented dense TiO2 nanowires can impose excellent light trapping properties where the existence of an ultrathin Pt layer (with a thickness of 10 nm) can absorb the light in an ultrabroadband frequency range with an amount near unity. Throughout this study, we first investigate the formation of resonant modes in the metallic nanowires. Our findings prove that a nanowire structure can support multiple longitudin...
abstract: Gold absorbers based on plasmonic tapered coaxial holes (PTCHs) are demonstrated theoretic...
We demonstrate near-unity, broadband absorbing optoelectronic devices using sub-15 nm thick transiti...
We report design methods for achieving near-unity broadband light absorption in sparse nanowire arra...
In this paper, we propose a facile and large scale compatible design to obtain perfect ultrabroadban...
In this paper, we demonstrate a facile, lithography free, and large scale compatible fabrication rou...
We propose the optical design for the absorptive element of photodetectors to achieve wavelength sel...
Nanostructured metals have received a significant amount of attention in recent years due to their e...
Semiconductor nanowires (NWs) possess a fascinating ability to efficiently collect and trap light in...
Recently, it was noted that losses in plasmonics can also enable several useful optical functionalit...
Metallic and dielectric nanostructures have highly tunable resonances that have been used to increas...
We present a concept for an ultrathin solar fuel device with a nanostructured back contact. Using ri...
The poor internal quantum efficiency (IQE) arising from high recombination and insufficient absorpti...
Many photonic and plasmonic structures have been proposed to achieve ultrasubwavelength light confin...
Resonant plasmonic and metamaterial structures allow for control of fundamental optical processes su...
© OSA 2015. We show that perfect absorption can be achieved in ultra-thin gratings composed of weakl...
abstract: Gold absorbers based on plasmonic tapered coaxial holes (PTCHs) are demonstrated theoretic...
We demonstrate near-unity, broadband absorbing optoelectronic devices using sub-15 nm thick transiti...
We report design methods for achieving near-unity broadband light absorption in sparse nanowire arra...
In this paper, we propose a facile and large scale compatible design to obtain perfect ultrabroadban...
In this paper, we demonstrate a facile, lithography free, and large scale compatible fabrication rou...
We propose the optical design for the absorptive element of photodetectors to achieve wavelength sel...
Nanostructured metals have received a significant amount of attention in recent years due to their e...
Semiconductor nanowires (NWs) possess a fascinating ability to efficiently collect and trap light in...
Recently, it was noted that losses in plasmonics can also enable several useful optical functionalit...
Metallic and dielectric nanostructures have highly tunable resonances that have been used to increas...
We present a concept for an ultrathin solar fuel device with a nanostructured back contact. Using ri...
The poor internal quantum efficiency (IQE) arising from high recombination and insufficient absorpti...
Many photonic and plasmonic structures have been proposed to achieve ultrasubwavelength light confin...
Resonant plasmonic and metamaterial structures allow for control of fundamental optical processes su...
© OSA 2015. We show that perfect absorption can be achieved in ultra-thin gratings composed of weakl...
abstract: Gold absorbers based on plasmonic tapered coaxial holes (PTCHs) are demonstrated theoretic...
We demonstrate near-unity, broadband absorbing optoelectronic devices using sub-15 nm thick transiti...
We report design methods for achieving near-unity broadband light absorption in sparse nanowire arra...