We fabricate Schottky contact photodetectors based on electrically contacted Au nanoantennas on p-Si for the plasmonic detection of sub-bandgap photons in the optical communications wavelength range. Based on a physical model for the internal photoemission of hot carriers, photons coupled onto the Au nanoantennas excite resonant plasmons, which decay into energetic "hot" holes emitted over the Schottky barrier at the Au/p-Si interface, resulting in a photocurrent. In our device, the active Schottky area consists of Au/p-Si contact and is very small, whereas the probing pad for external electrical interconnection is larger but consists of Au/Ti/ p-Si contact having a comparatively higher Schottky barrier, thus producing negligible photo and ...
Here we propose an original waveguide-integrated plasmonic Schottky photodetector that takes full ad...
We suggest a silicon nanowire (SiNW) photodetector side-contacted with hemispherical Au nanoantennas...
When an incident electromagnetic wave at optical frequencies couples to a metallic nanostructure, it...
In this paper we present a sub-bandgap photodetector consisting of a metal grating on a thin metal p...
Recent progresses in plasmon-induced hot electrons open up the possibility to achieve photon harvest...
Extracting plasmon‐induced hot carriers over a metal–semiconductor Schottky barrier enables photodet...
We propose a plasmonic gold nanodipole array on silicon, forming a Schottky contact thereon, and cov...
Abstract This work developed an all-Si photodetector with a surface plasmonic resonator formed by a ...
M.T.: Improved surface plasmon enhanced photodetection at an Au-GaAs Schottky junction using a novel...
We demonstrate Silicon-only near-infrared (NIR) photodetectors (sensitive up to 2000 nm) that meet l...
Cataloged from PDF version of article.In this work, we propose Silicon based broad-band near infrare...
Properties of nanostructures realized by bottom-up techniques are often different from their bulk co...
In this work, we propose Silicon based broad-band near infrared Schottky barrier photodetectors. The...
Properties of nanostructures realized by bottom-up techniques are often different from their bulk co...
We experimentally demonstrate an on-chip compact and simple to fabricate silicon Schottky photodetec...
Here we propose an original waveguide-integrated plasmonic Schottky photodetector that takes full ad...
We suggest a silicon nanowire (SiNW) photodetector side-contacted with hemispherical Au nanoantennas...
When an incident electromagnetic wave at optical frequencies couples to a metallic nanostructure, it...
In this paper we present a sub-bandgap photodetector consisting of a metal grating on a thin metal p...
Recent progresses in plasmon-induced hot electrons open up the possibility to achieve photon harvest...
Extracting plasmon‐induced hot carriers over a metal–semiconductor Schottky barrier enables photodet...
We propose a plasmonic gold nanodipole array on silicon, forming a Schottky contact thereon, and cov...
Abstract This work developed an all-Si photodetector with a surface plasmonic resonator formed by a ...
M.T.: Improved surface plasmon enhanced photodetection at an Au-GaAs Schottky junction using a novel...
We demonstrate Silicon-only near-infrared (NIR) photodetectors (sensitive up to 2000 nm) that meet l...
Cataloged from PDF version of article.In this work, we propose Silicon based broad-band near infrare...
Properties of nanostructures realized by bottom-up techniques are often different from their bulk co...
In this work, we propose Silicon based broad-band near infrared Schottky barrier photodetectors. The...
Properties of nanostructures realized by bottom-up techniques are often different from their bulk co...
We experimentally demonstrate an on-chip compact and simple to fabricate silicon Schottky photodetec...
Here we propose an original waveguide-integrated plasmonic Schottky photodetector that takes full ad...
We suggest a silicon nanowire (SiNW) photodetector side-contacted with hemispherical Au nanoantennas...
When an incident electromagnetic wave at optical frequencies couples to a metallic nanostructure, it...