DocumentCode :
1118383
Title :
Terahertz Sources Based on Intracavity Parametric Down-Conversion in Quasi-Phase-Matched Gallium Arsenide
Author :
Schaar, Joseph E. ; Vodopyanov, Konstantin L. ; Kuo, Paulina S. ; Fejer, Martin M. ; Yu, X. ; Lin, Angie ; Harris, James S. ; Bliss, David ; Lynch, Candace ; Kozlov, Vladimir G. ; Hurlbut, Walter
Author_Institution :
Stanford Univ., Stanford
Volume :
14
Issue :
2
fYear :
2008
Firstpage :
354
Lastpage :
362
Abstract :
We have efficiently generated tunable terahertz (THz) radiation using intracavity parametric down-conversion in gallium arsenide (GaAs). We used three types of microstructured GaAs to quasi-phase-match the interaction: optically contacted, orientation-patterned, and diffusion-bonded GaAs. The GaAs was placed in an optical parametric oscillator (OPO) cavity, and the THz wave was generated by difference-frequency mixing between the OPO signal and idler waves. The OPO used type-II phase-matched periodically poled lithium niobate as a gain medium and was synchronously pumped by a mode-locked laser at 1064 nm (7 ps and 200 nJ at 50 MHz). With center frequencies spanning 0.4-3.5 THz, 250-GHz bandwidth radiation was generated. We measured two orders of optical cascading generated by the mixing of optical and THz waves. In a doubly resonant oscillator (DRO) configuration, the efficiency increased by 21times over the singly resonant oscillator performance with an optical-to-THz efficiency of 10-4 and average THz power of 1 mW. The GaAs stabilized the DRO by a thermooptic feedback mechanism that created a quasi- continuous-wave train of THz pulses.
Keywords :
laser mode locking; optical frequency conversion; optical parametric oscillators; optical phase matching; thermo-optical devices; GaAs; OPO signal; THz wave; bandwidth 250 GHz; difference-frequency mixing; doubly resonant oscillator configuration; energy 200 mJ; frequency 0.4 THz to 3.5 THz; frequency 50 mHz; gain medium; idler waves; intracavity parametric down-conversion; mode-locked laser; optical cascading; optical parametric oscillator cavity; optical waves; quasiphase-matched gallium arsenide; terahertz sources; thermooptic feedback mechanism; time 7 ps; tunable terahertz radiation; type-II phase-matched periodically poled lithium niobate; wavelength 1064 nm; Frequency conversion; Gallium arsenide; Nonlinear optics; Optical feedback; Optical mixing; Optical pumping; Oscillators; Resonance; Signal generators; Tunable circuits and devices; Difference-frequency mixing; doubly resonant; gallium arsenide (GaAs); nearly degenerate; optical parametric oscillator (OPO); parametric down-conversion; self-stabilized; terahertz (THz); tunable;
fLanguage :
English
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
1077-260X
Type :
jour
DOI :
10.1109/JSTQE.2008.917957
Filename :
4481129
Link To Document :
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