Planar Ultraviolet Photodetectors Formed by Si Implantation into p-GaN
M. C. Chen, Jinn‐Kong Sheu, M. L. Lee, C. J. Kao, C. J. Tun, G.C. Chi
Abstract
Open-access reader
M. C. Chen, Jinn‐Kong Sheu, M. L. Lee, C. J. Kao, C. J. Tun, G.C. Chi
Abstract
Open-access reader
Planar GaN-based photodetectors were formed through Si implantation into p-GaN. When the reverse bias was below , the photodetectors showed nearly constant dark current around . The dark current was somewhat higher as compared to the dark current observed in conventional epitaxial grown p-i-n photodiodes. Increase in dark current may be due to the incomplete damage (induced by implantation) removal. Spectral response measurements revealed that peak responsivity was around at for the planar UV photodetectors with a reverse bias of . It was also found that visible -to-UV rejection ratio was around 700.
OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Planar GaN-based photodetectors were formed through Si implantation into p-GaN. When the reverse bias was below , the photodetectors showed nearly constant dark current around . The dark current was somewhat higher as compared to the dark current observed in conventional epitaxial grown p-i-n photodiodes. Increase in dark current may be due to the incomplete damage (induced by implantation) removal. Spectral response measurements revealed that peak responsivity was around at for the planar UV photodetectors with a reverse bias of . It was also found that visible -to-UV rejection ratio was around 700.
Key concepts: Photodetector, Dark current, Responsivity, Photodiode, Optoelectronics, Ultraviolet, Planar, Materials science