DocumentCode
1880292
Title
Negative photoconduction in fully fabricated InP based HEMTs
Author
Schuermeyer, Fritz ; Hur, Katerina Y. ; Shur, Michael
Author_Institution
Res. & Dev. Center, Wright-Patterson AFB, OH, USA
fYear
1997
fDate
4-6 Aug 1997
Firstpage
89
Lastpage
98
Abstract
We studied the photocurrents in InP-based HEMTs as a function of bias voltages and photon energy. The devices had excellent electrical characteristics. In the deep subthreshold regime the drain current stems from the gate current. In this region, the photo-drain-current also is caused by the photo-gate current, as evidenced by its magnitude and spectral characteristics. In the subthreshold regime, the photocurrent rises rapidly at a photoenergy of approximately 0.7 eV (which corresponds to the energy gap of the InGaAs channel). Spectral analysis indicates that the response stems from a multitude of transitions. In this regime, transitions to the first electron subband are dominating. When the device is strongly turned on, this dominance disappears. At small drain voltages (i.e. in the linear region) the photoconduction behavior is similar to that observed in GaAs based HEMTs. The transistor amplifies the photogenerated charge due to hole storage in the channel. In the saturation regime we observe a drastically different behavior: The photocurrent is negative. In this case, the drain current becomes smaller when the device is illuminated. We also observe a pronounced change in spectral response in this region. We explain this effect by storage of electrons rather than of holes
Keywords
III-V semiconductors; aluminium compounds; gallium arsenide; high electron mobility transistors; hole traps; indium compounds; photoconductivity; photoelectron spectra; phototransistors; 0.7 eV; HEMTs; III-V semiconductors; InP; InP-AlInAs-GaInAs; bias voltages; deep subthreshold regime; electrical characteristics; electron transitions; hole storage; linear region; negative photoconduction; photo-drain-current; photogenerated charge; photon energy; saturation regime; spectral analysis; Phototransistors;
fLanguage
English
Publisher
ieee
Conference_Titel
High Speed Semiconductor Devices and Circuits, 1997. Proceedings., 1997 IEEE/Cornell Conference on Advanced Concepts in
Conference_Location
Ithaca, NY
ISSN
1079-4700
Print_ISBN
0-7803-3970-3
Type
conf
DOI
10.1109/CORNEL.1997.649346
Filename
649346
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