In this work, we propose Silicon based broad-band near infrared Schottky barrier photodetectors. The devices operate beyond 1200 nm wavelength and exhibit photoresponsivity values as high as 3.5 mA/W with a low dark current density of about 50 pA/μm2. We make use of Au nanoislands on Silicon surface formed by rapid thermal annealing of a thin Au layer. Surface plasmons are excited on Au nanoislands and this field localization results in efficient absorption of sub-bandgap photons. Absorbed photons excite the electrons of the metal to higher energy levels (hot electron generation) and the collection of these hot electrons to the semiconductor results in photocurrent (internal photoemission). Simple and scalable fabrication makes these device...
Silicon is the most widely used material for visible photodetection, with extensive applications in ...
In gratings, incident light can couple strongly to plasmons propagating through periodically spaced ...
In this Letter, we present a new class of near-infrared photodetectors comprising Au nanorods-ZnO na...
Cataloged from PDF version of article.In this work, we propose Silicon based broad-band near infrare...
We demonstrate Silicon-only near-infrared (NIR) photodetectors (sensitive up to 2000 nm) that meet l...
Plasmonic photodetection based on the hot-electron generation in nanostructures is a promising strat...
Nowadays numerous are the applications interested in exploiting near infrared light detection like L...
Nowadays numerous are the applications interested in exploiting near infrared light detection like L...
Schottky photodetectors have been intensively investigated due to their high speeds, low device capa...
We fabricate Schottky contact photodetectors based on electrically contacted Au nanoantennas on p-Si...
Recent progresses in plasmon-induced hot electrons open up the possibility to achieve photon harvest...
Recent progresses in plasmon-induced hot electrons open up the possibility to achieve photon harvest...
In this Letter, we present a new class of near-infrared photodetectors comprising Au nanorods–ZnO na...
We report a high-response optical detector based on n-ZnO/p-Si nanowires (NWs) core-shell arrays dec...
Silicon based single photon avalanche diodes (SPAD) are able to detect single photons in the visible...
Silicon is the most widely used material for visible photodetection, with extensive applications in ...
In gratings, incident light can couple strongly to plasmons propagating through periodically spaced ...
In this Letter, we present a new class of near-infrared photodetectors comprising Au nanorods-ZnO na...
Cataloged from PDF version of article.In this work, we propose Silicon based broad-band near infrare...
We demonstrate Silicon-only near-infrared (NIR) photodetectors (sensitive up to 2000 nm) that meet l...
Plasmonic photodetection based on the hot-electron generation in nanostructures is a promising strat...
Nowadays numerous are the applications interested in exploiting near infrared light detection like L...
Nowadays numerous are the applications interested in exploiting near infrared light detection like L...
Schottky photodetectors have been intensively investigated due to their high speeds, low device capa...
We fabricate Schottky contact photodetectors based on electrically contacted Au nanoantennas on p-Si...
Recent progresses in plasmon-induced hot electrons open up the possibility to achieve photon harvest...
Recent progresses in plasmon-induced hot electrons open up the possibility to achieve photon harvest...
In this Letter, we present a new class of near-infrared photodetectors comprising Au nanorods–ZnO na...
We report a high-response optical detector based on n-ZnO/p-Si nanowires (NWs) core-shell arrays dec...
Silicon based single photon avalanche diodes (SPAD) are able to detect single photons in the visible...
Silicon is the most widely used material for visible photodetection, with extensive applications in ...
In gratings, incident light can couple strongly to plasmons propagating through periodically spaced ...
In this Letter, we present a new class of near-infrared photodetectors comprising Au nanorods-ZnO na...