DocumentCode
1110257
Title
Four-wave mixing in indium antimonide
Author
Kenzie, Hugh A Mac ; Hagan, David J. ; Al-Attar, H.A.
Author_Institution
Dept. of Phys., Heriot-Watt Univ., Edinburgh, UK
Volume
22
Issue
8
fYear
1986
fDate
8/1/1986 12:00:00 AM
Firstpage
1328
Lastpage
1340
Abstract
We report a range of experiments in both the degenerate and nondegenerate regimes of four-wave mixing in indium antimonide using CW CO laser sources. For the degenerate case, we specify all the polarization source terms and the signals which they radiate. We identify the dominant term for the phase-conjugate signal experimentally, and confirm that this involves a large-period grating formed by the forward pump and probe. The third-order susceptibility was measured as
esu. This was shown to be highly resonant with the InSb bandgap. By varying the pump-probe input angle, the period of the grating was changed, and thus a carrier diffusion length of
m was determined. By probing the grating with a second laser, the dispersion of the grating was measured over a wide range of frequencies, and was found to be much less resonant with the band edge than
. Saturation of
was observed and possible sources are identified and discussed. The results of near-resonant nondegenerate mixing experiments are presented and the measured value of
esu under these conditions is discussed in relation to the much larger degenerate, resonant
.
esu. This was shown to be highly resonant with the InSb bandgap. By varying the pump-probe input angle, the period of the grating was changed, and thus a carrier diffusion length of
m was determined. By probing the grating with a second laser, the dispersion of the grating was measured over a wide range of frequencies, and was found to be much less resonant with the band edge than
. Saturation of
was observed and possible sources are identified and discussed. The results of near-resonant nondegenerate mixing experiments are presented and the measured value of
esu under these conditions is discussed in relation to the much larger degenerate, resonant
.Keywords
Carbon monoxide lasers; Indium materials/devices; Optical mixers; Dispersion; Four-wave mixing; Gratings; Indium; Photonic band gap; Polarization; Probes; Pump lasers; Resonance; Signal processing;
fLanguage
English
Journal_Title
Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
0018-9197
Type
jour
DOI
10.1109/JQE.1986.1073110
Filename
1073110
Link To Document