We study the influence of residual strain in InGaAs/InAlAs superlattice (SL) on the ultrafast photocarrier dynamics under femtosecond laser excitation. We propose and fabricate a novel-designed strained InGaAs/InAlAs SL which allows us to obtain an ultrashort photocarrier relaxation time ofτ∼ 1.5 ps without Be-doping of the InGaAs photoconductor. We assume two dominant mechanisms to be responsible for a sharp reduction ofτ : photocarriers trapping by defect levels in InAlAs barriers and increased photocarriers scattering at InGaAs/InAlAs interface roughness due to residual strain in the SL. The THz time-domain spectroscopic measurements reveal an increase in both emitted THz waveform and spectrum amplitudes with an increase of residual strain in SL. The results might be of considerable interest for accommodating the needs of THz pulsed spectroscopy and imaging in fundamental and applied branches of THz science and technology.
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Showing posts with label E.D. Mishina. Show all posts
Showing posts with label E.D. Mishina. Show all posts
Monday, August 20, 2018
Abstract-Strain-induced InGaAs/InAlAs superlattices for terahertz radiation
Saturday, March 24, 2018
Abstract-Sensitivity of terahertz photoconductive antenna based on multilayer structure grown on different substrate crystallographic orientation
V.R. Bilyk, A.M. Buryakov, K.A. Brekhov, D.I. Khusyainov, E.D. Mishina, G.B. Galiev, S.S. Pushkarev, E.A. Klimov,
http://ieeexplore.ieee.org/document/8247407/
Experimentally demonstrated difference of THz detection efficiency by the photoconductive antennas based on low-temperature GaAs films grown on different oriented substrate. Crystallographic orientation of films influence to efficiency on the terahertz detection was shown.
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