Title :
Design and optimization of high-speed resonant cavity enhanced Schottky photodiodes
Author :
Gökkavas, Mutlu ; Onat, Bora M. ; Ozbay, Ekmel ; Ata, E.P. ; Xu, J. ; Towe, E. ; Ünlü, M. Selim
Author_Institution :
Dept. of Electr. Comput. Eng., Boston Univ., MA, USA
fDate :
2/1/1999 12:00:00 AM
Abstract :
Resonant cavity enhanced (RCE) photodiodes (PD´s) are promising candidates for applications in optical communications and interconnects where high-speed high-efficiency photodetection is desirable. In RCE structures, the electrical properties of the photodetector remain mostly unchanged; however, the presence of the microcavity causes wavelength selectivity accompanied by a drastic increase of the optical field at the resonant wavelengths. The enhanced optical field allows to maintain a high efficiency for faster transit-time limited PD´s with thinner absorption regions. The combination of an RCE detection scheme with Schottky PD´s allows for the fabrication of high-performance photodetectors with relatively simple material structures and fabrication processes. In top-illuminated RCE Schottky PD´s, a semitransparent Schottky contact can also serve as the top reflector of the resonant cavity. We present theoretical and experimental results on spectral and high-speed properties of GaAs-AlAs-InGaAs RCE Schottky PD´s designed for 900-nm wavelength
Keywords :
III-V semiconductors; Schottky diodes; aluminium compounds; gallium arsenide; indium compounds; infrared detectors; optical design techniques; optical resonators; optimisation; photodetectors; photodiodes; 900 nm; GaAs-AlAs-InGaAs; GaAs-AlAs-InGaAs RCE Schottky PD; RCE detection scheme; RCE structures; Schottky PD; electrical properties; enhanced optical field; high efficiency; high-performance photodetector fabrication; high-speed high-efficiency photodetection; high-speed resonant cavity enhanced Schottky photodiode design; high-speed resonant cavity enhanced Schottky photodiode optimisation; microcavity; optical communications; optical field; optical interconnects; resonant wavelengths; semitransparent Schottky contact; thinner absorption regions; top reflector; top-illuminated RCE Schottky PD; transit-time limited PD; wavelength selectivity; Absorption; Design optimization; High speed optical techniques; Microcavities; Optical device fabrication; Optical fiber communication; Optical interconnections; Photodetectors; Photodiodes; Resonance;
Journal_Title :
Quantum Electronics, IEEE Journal of