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- W2078344530 abstract "Based on the optical path model for nonlinear imaging, we systematically investigated the propagation of flat-toppedGaussian beam which is modulated by two parallel phase-typed wirelike scatterers through computer simulation. It isfound that, under certain conditions, there is no intense second-order hot image fringe in the predicated planehalf-distance from the medium to the scatterer, but there are other two intense fringes whose in-beam positions aresome distance deviated from those of the scatterers. These intense fringes are called second-order-hot-image-likefringes in this paper. When compared with the corresponding single scatterer case, the intensity level of the fringesis close to that of second-order hot image fringe. Besides, there are also hot images, but their intensities are muchlower. The influence of the phase modulation depth of the scatterers on the propagation for both double and singlescatterer cases is also investigated. First, as the phase modulation depth increases, the fringe intensity changes sameas second-order hot image fringe does and their intensities keep very close to each other. Second, the fringeintensity increases at first and then decreases in a certain value range of phase modulation depth, but the hot imageintensity changes inversely. Third, in the Kerr medium, the maximum intensity of the beam in the double scatterercase is higher than that in the single scatterer case except for the phase modulation value section around three rad." @default.
- W2078344530 created "2016-06-24" @default.
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- W2078344530 date "2014-11-18" @default.
- W2078344530 modified "2023-09-23" @default.
- W2078344530 title "Investigation on the formation of second-order-hot-image-like fringes" @default.
- W2078344530 doi "https://doi.org/10.1117/12.2071457" @default.
- W2078344530 hasPublicationYear "2014" @default.
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