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- W2016021393 abstract "A theoretical model based on the nonlinear optical rectification at semiconductor surfaces and quantum wells is reviewed. The theory explains the experimental observations including the crystal orientation dependence of the terahertz signal on the crystal growth axis. Interesting properties, such as (1) the polarization of the radiated electromagnetic pulse is mostly in the plane of incidence (TM polarization), (2) the polarity of the radiation field changes in sign from an n-type doped sample to a p-type doped sample, (3) the radiated field decreases with increasing temperature, (4) the radiation field decreases with increasing doping concentration, and (5) the frequency response of the radiation field peaks near the terahertz range, can all be explained using the optical rectification theory. We also discuss how the same theory can explain the experimentally observed terahertz signals from coupled quantum-well structures. The theory shows that both optically rectified signals and quantum beats are generated." @default.
- W2016021393 created "2016-06-24" @default.
- W2016021393 creator A5091848089 @default.
- W2016021393 date "1993-06-17" @default.
- W2016021393 modified "2023-09-26" @default.
- W2016021393 title "<title>Femtosecond optical rectification from semiconductor surfaces and quantum wells</title>" @default.
- W2016021393 doi "https://doi.org/10.1117/12.147051" @default.
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