We demonstrate Silicon-only near-infrared (NIR) photodetectors (sensitive up to 2000 nm) that meet large-scale ultralow-cost fabrication requirements. For the detection of infrared photons, we use metal nanoislands that form Schottky contact with Silicon. NIR photons excite plasmon resonances at metal nanoislands and plasmons decay into highly energetic charge carriers (hot electrons). These hot electrons get injected into Silicon (internal photoemission), resulting in photocurrent. Several groups have studied plasmonic nanoantennas using high resolution lithography techniques. In this work, we make use of randomly formed nanoislands for broad-band photoresponse at NIR wavelengths. We observe photoresponse up to 2000 nm wavelength with low ...
In gratings, incident light can couple strongly to plasmons propagating through periodically spaced ...
Along this thesis, titled “Near Infrared detectors based on silicon supersaturated with transition m...
Investigating semiconductor materials and devices at the nanoscale has become crucial in order to ma...
In this work, we propose Silicon based broad-band near infrared Schottky barrier photodetectors. The...
Cataloged from PDF version of article.In this work, we propose Silicon based broad-band near infrare...
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...
Silicon is the most widely used material for visible photodetection, with extensive applications in ...
Schottky photodetectors have been intensively investigated due to their high speeds, low device capa...
Plasmonic photodetection based on the hot-electron generation in nanostructures is a promising strat...
Recent progresses in plasmon-induced hot electrons open up the possibility to achieve photon harvest...
Infrared imaging is a powerful capability that has been technologically driven primarily by the defe...
We report on the coupling of ZnO nanoparticles with plasmonic gold nanoislands in a solution process...
In this work an advanced overview in the field of near-infrared silicon photodetectors, is presented...
This dissertation details the use of silicon as near- infrared photodetectors based on two different...
In gratings, incident light can couple strongly to plasmons propagating through periodically spaced ...
Along this thesis, titled “Near Infrared detectors based on silicon supersaturated with transition m...
Investigating semiconductor materials and devices at the nanoscale has become crucial in order to ma...
In this work, we propose Silicon based broad-band near infrared Schottky barrier photodetectors. The...
Cataloged from PDF version of article.In this work, we propose Silicon based broad-band near infrare...
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...
Silicon is the most widely used material for visible photodetection, with extensive applications in ...
Schottky photodetectors have been intensively investigated due to their high speeds, low device capa...
Plasmonic photodetection based on the hot-electron generation in nanostructures is a promising strat...
Recent progresses in plasmon-induced hot electrons open up the possibility to achieve photon harvest...
Infrared imaging is a powerful capability that has been technologically driven primarily by the defe...
We report on the coupling of ZnO nanoparticles with plasmonic gold nanoislands in a solution process...
In this work an advanced overview in the field of near-infrared silicon photodetectors, is presented...
This dissertation details the use of silicon as near- infrared photodetectors based on two different...
In gratings, incident light can couple strongly to plasmons propagating through periodically spaced ...
Along this thesis, titled “Near Infrared detectors based on silicon supersaturated with transition m...
Investigating semiconductor materials and devices at the nanoscale has become crucial in order to ma...