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- W2805985405 abstract "We investigate the temporal and spectral evolutions of finite-energy Airy pulses in the presence of power-law optical potentials. The potentials are generated by the time-dependent pumped light, which propagates together with the Airy pulses in a highly nonlinear optical fiber. We show that the intrinsic acceleration of Airy pulses can be modified by an external force that stems from a linear potential, and hence unidirectional frequency shift can be realized. When a triangle potential is employed, the pulse will exhibit self-splitting both in temporal and spectral domains. Additionally, as a parabolic potential is utilized, both the temporal waveform and frequency spectrum of the Airy pulse will exchange alternately between the Airy and Gaussian profiles. By using higher-order power-law potentials, we also realize both revival and antirevival effects for the Airy pulses. The study may find wide applications in pulse reshaping and spectral-temporal imaging for both optical communication and signal processing." @default.
- W2805985405 created "2018-06-13" @default.
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- W2805985405 date "2018-06-08" @default.
- W2805985405 modified "2023-10-17" @default.
- W2805985405 title "Airy pulse shaping using time-dependent power-law potentials" @default.
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- W2805985405 doi "https://doi.org/10.1103/physreva.97.063815" @default.
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