We have designed, fabricated and tested resonant cavity enhanced visible-blind AlGaN-based Schottky photodiodes. The bottom mirror of the resonant cavity was formed with a 20 pair AlN/Al 0.2Ga 0.8N Bragg mirror. The devices were fabricated using a microwave compatible fabrication process. Au and indium-tin-oxide (ITO) thin films were used for Schottky contact formation. ITO and Au-Schottky devices exhibited resonant peaks with 0.153 A/W and 0.046 A/W responsivity values at 337 nm and 350 nm respectively. Temporal high-speed measurements at 357 nm resulted in fast pulse responses with pulse widths as short as 77 ps. The fastest UV detector had a 3-dB bandwidth of 780 MHz
Design, fabrication, and characterization of high-performance Al xGa1-xN-based photodetectors for so...
We report on the temporal pulse response measurements of solar-blind AlxGa1-xN-based heterojunction ...
Cataloged from PDF version of article.We report AlGaN/GaN-based high-speed solar-blind photodetector...
We have designed, fabricated and tested resonant cavity enhanced visible-blind AlGaN-based Schottky ...
We have fabricated GaN-based high-speed ultraviolet Schottky photodiodes using indium-tin-oxide (ITO...
High-performance solar-blind AlGaN-based Schottky photodiodes have been demonstrated. The detectors ...
High-speed Schottky photodiodes suffer from low efficiency mainly due to the thin absorption layers ...
We report high-speed solar-blind AlGaN-based Schottky photodiodes. AlGaN/GaN heterostructure device ...
High-speed resonant cavity enhanced Schottky photodiodes operating in 800-850 nm wavelength region a...
In this paper we present our efforts on the design, fabrication and characterization of high-speed, ...
The fabrication of ITO (indium tin oxide)-AlAs-based resonant cavity enhanced Schottky photodiodes w...
Cataloged from PDF version of article.High-speed Schottky photodiodes suffer from low efficiency mai...
We demonstrated high-performance resonant cavity enhanced ITO-Schottky photodiodes. We achieved a pe...
Al0.38Ga0.62N/GaN heterojunction solar-blind Schottky photodetectors with low dark current, high res...
Cataloged from PDF version of article.Al0.38Ga0.62N/GaN heterojunction solar-blind Schottky photodet...
Design, fabrication, and characterization of high-performance Al xGa1-xN-based photodetectors for so...
We report on the temporal pulse response measurements of solar-blind AlxGa1-xN-based heterojunction ...
Cataloged from PDF version of article.We report AlGaN/GaN-based high-speed solar-blind photodetector...
We have designed, fabricated and tested resonant cavity enhanced visible-blind AlGaN-based Schottky ...
We have fabricated GaN-based high-speed ultraviolet Schottky photodiodes using indium-tin-oxide (ITO...
High-performance solar-blind AlGaN-based Schottky photodiodes have been demonstrated. The detectors ...
High-speed Schottky photodiodes suffer from low efficiency mainly due to the thin absorption layers ...
We report high-speed solar-blind AlGaN-based Schottky photodiodes. AlGaN/GaN heterostructure device ...
High-speed resonant cavity enhanced Schottky photodiodes operating in 800-850 nm wavelength region a...
In this paper we present our efforts on the design, fabrication and characterization of high-speed, ...
The fabrication of ITO (indium tin oxide)-AlAs-based resonant cavity enhanced Schottky photodiodes w...
Cataloged from PDF version of article.High-speed Schottky photodiodes suffer from low efficiency mai...
We demonstrated high-performance resonant cavity enhanced ITO-Schottky photodiodes. We achieved a pe...
Al0.38Ga0.62N/GaN heterojunction solar-blind Schottky photodetectors with low dark current, high res...
Cataloged from PDF version of article.Al0.38Ga0.62N/GaN heterojunction solar-blind Schottky photodet...
Design, fabrication, and characterization of high-performance Al xGa1-xN-based photodetectors for so...
We report on the temporal pulse response measurements of solar-blind AlxGa1-xN-based heterojunction ...
Cataloged from PDF version of article.We report AlGaN/GaN-based high-speed solar-blind photodetector...