DocumentCode
103926
Title
Unitraveling-Carrier Photodiodes for Terahertz Applications
Author
Ishibashi, Takayuki ; Muramoto, Yoshifumi ; Yoshimatsu, Toshihide ; Ito, H.
Author_Institution
NTT Photonics Labs., NTT Corp., Atsugi, Japan
Volume
20
Issue
6
fYear
2014
fDate
Nov.-Dec. 2014
Firstpage
79
Lastpage
88
Abstract
Device design for unitraveling-carrier photodiodes (UTC-PDs) and their derivative structures is reconsidered from the point of view of terahertz (THz) applications. A key design procedure for maximizing their bandwidth is optimization by incorporating hybrid absorbers. The effect of quasi-field in p-type absorber is carefully examined. It has been shown that the initial velocity transient must be taken into account to evaluate the effective average velocity. Photomixers integrating a hybrid-absorber UTC-PD and a bow-tie antenna were fabricated and characterized. THz-wave generation by the photomixers in a frequency range of up to around 2.5 THz was confirmed. The observed THz-wave output exhibits significant changes with bias voltage, where the decrease in the output with increasing negative bias voltage is more pronounced at higher frequencies. This output behavior is due to the change in electron velocity in the diode depletion layer associated with the overshoot effect. From the dependence of the output power on frequency, effective electron velocity is found to be as high as $6 times 10^{7}$ cm/s at optimum bias voltage of -0.4 V.
Keywords
bow-tie antennas; mixers (circuits); photodiodes; terahertz wave devices; THz-wave generation; bias voltage; bow-tie antenna; diode depletion layer; electron velocity; overshoot effect; p-type absorber; photomixers; terahertz applications; unitraveling-carrier photodiodes; voltage -0.4 V; Bandwidth; Indium gallium arsenide; Optical switches; Photodiodes; Space charge; Transient analysis; Photodiode (PD); antenna integrated photomixer; photomixer; terahertz (THz); transient electron velocity; uni-traveling-carrier photodiode (UTC-PD); velocity overshoot;
fLanguage
English
Journal_Title
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
1077-260X
Type
jour
DOI
10.1109/JSTQE.2014.2336537
Filename
6861939
Link To Document