Title :
High-speed transparent indium-tin-oxide based resonant cavity Schottky photodiode with Si/sub 3/N/sub 4//SiO/sub 2/ top Bragg mirror
Author :
Biyikli, N. ; Kimukin, I. ; Aytur, O. ; Ozbay, E. ; Gokkavas, M. ; Unlu, S.
Author_Institution :
Dept. of Phys., Bilkent Univ., Ankara, Turkey
Abstract :
Summary form only given. Photodetectors demonstrating high bandwidth-efficiency (BWE) products are required for high-performance optical communication and measurement systems. For conventional photodiodes the BWE product is limited due to the bandwidth-efficiency trade-off. A resonant cavity enhanced (RCE) photodetection scheme offers the possibility to overcome this limitation. Very high BWE products are achieved using Schottky and p-i-n type RCE photodiodes, which could not be reached with conventional detector structures. Even better performances should be possible for RCE Schottky photodiodes if one can get rid of the optical losses and scattering caused by the Schottky metal, Au, which also serves as the top mirror of the resonant cavity. The transparent, low resistivity material indium-tin-oxide (ITO) is a potential alternative to thin semi-transparent Au as a Schottky-barrier contact material. We report our work on high-performance ITO-based RCE Schottky photodiodes.
Keywords :
Schottky diodes; cavity resonators; high-speed optical techniques; indium compounds; mirrors; optical resonators; photodetectors; photodiodes; semiconductor materials; silicon compounds; tin compounds; Au; ITO; InSnO; Schottky metal; Schottky photodiodes; Schottky type resonant cavity enhanced photodiodes; Si/sub 3/N/sub 4//SiO/sub 2/ top Bragg mirror; Si/sub 3/O/sub 4/-SiO/sub 2/; bandwidth-efficiency; bandwidth-efficiency trade-off; high-performance optical communication systems; high-performance optical measurement systems; high-speed transparent ITO based resonant cavity Schottky photodiode; optical losses; optical scattering; p-i-n type resonant cavity enhanced photodiodes; photodetectors; photodiodes; resonant cavity Schottky photodiode; resonant cavity enhanced Schottky photodiodes; resonant cavity enhanced photodetection scheme; Detectors; Gold; High speed optical techniques; Optical fiber communication; Optical losses; Optical materials; Optical scattering; PIN photodiodes; Photodetectors; Resonance;
Conference_Titel :
Lasers and Electro-Optics, 2000. (CLEO 2000). Conference on
Conference_Location :
San Francisco, CA, USA
Print_ISBN :
1-55752-634-6
DOI :
10.1109/CLEO.2000.907263