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- W2079790722 abstract "vHere, we consider the possibility of involving the photo-EMF detectors in registration of the parameters peculiar to ultrashortoptical pulses, and it is compared whit the recently triple correlator via Direct and Cascade Third HarmonicGeneration. Knowledge of triple auto-correlation function, whose Fourier transformation shapes the correspondingbispectrum, makes possible recovering such train-average parameters as, for instance, the pulse width and frequencychirp as well as revealing asymmetry of ultra-short pulse envelope. The main advantage of applying the photo-EMFdetectors lies in an opportunity to detect triple correlations directly, without any intermediate frequency conversion withoptical nonlinear processes in additional crystals. Then, the theory of three-beam-correlations at photosensitive layer ofthe photo-EMF detector is developed, so that principal possibility of registering the high-order-correlations isdemonstrated. It can be done within schematic arrangement including the three-beam Michelson interferometer, so thatthe obtained high-order-correlations have non-traditional form and need rather specific algorithm for their furtherprocessing. Also, the experimental characterizations are presented for gallium arsenide (GaAs) semiconductor and thepoly-fluoren 6-co-triphenyldiamine (PF6-TPD) photo-conductor-polymer, which both exhibit the photo-EMF-effect.They both exhibit high-pass transfer functions that give us high vibration stability. This novel approach provides morereliable analyzing train-average parameters of picosecond pulses due to significantly higher level of the output opticalsignals under processing." @default.
- W2079790722 created "2016-06-24" @default.
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- W2079790722 date "2011-02-10" @default.
- W2079790722 modified "2023-10-11" @default.
- W2079790722 title "Performing the triple auto-correlation of picosecond optical pulse train with a photo electromotive force detector" @default.
- W2079790722 doi "https://doi.org/10.1117/12.873977" @default.
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