DocumentCode
3555257
Title
Space charge spectroscopy in Hg1-x Cdx Te n+-p photodiodes
Author
Polla, D.L. ; Jones, C.E. ; Fonstad, C.G.
Author_Institution
Honeywell Electro-Optics Center
Volume
26
fYear
1980
fDate
1980
Firstpage
512
Lastpage
516
Abstract
We report an experimental study of thermally stimulated trap phenomena in Hg1-x Cdx Te photodiodes. Three experimental spectroscopic techniques have been used to characterize the trapping and emission of carriers at deep energy levels located within the space charge region or n+-on-p junction photodiodes. This study utilized both the synchronous-detection methods of Deep Level Transient Spectroscopy (DLTS) and Admittance Spectroscopy (AS) as well as the single-shot techniques of Thermally Stimulated Current (TSC) and Thermally Stimulated Capacitance (TSCap). Application of these techniques in a complementary approach has identified a single dominant mid-gap recombination center in p-Hg1-x Cdx Te (0.2 < × < 0.4). Further, the diode electrical properties p-side minority carrier lifetime τ, dynamic resistance-area product at zero bias voltage Ro A, and reverse-bias leakage current were shown to be directly related to a single bulk, donor-like, Shockley-Read recombination center which was identified by space charge spectroscopy.
Keywords
Admittance; Capacitance; Charge carrier lifetime; Diodes; Energy states; Mercury (metals); Photodiodes; Space charge; Spectroscopy; Tellurium;
fLanguage
English
Publisher
ieee
Conference_Titel
Electron Devices Meeting, 1980 International
Type
conf
DOI
10.1109/IEDM.1980.189880
Filename
1481323
Link To Document