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Evolution of few-cycle pulses in nonlinear dispersive media: Velocity of the center of mass and root-mean-square duration

机译:非线性色散介质中少循环脉冲的演变:质量中心的速度和根均方持续时间

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Simple arithmetic dependencies of the velocity of the mass center motion and the root-mean-square duration of initially single-cycle, two-cycle, and Gaussian pulses with a random number of oscillations under the pulse envelope are derived depending on their center frequency, initial duration, and peak field amplitude, as well as on dispersive and nonlinear characteristics of homogeneous isotropic dielectric media. In media with normal group dispersion, it is shown that due to nonresonant dispersion the square of the few-cycle pulse duration increases with distance inversely proportional to the fourth power of the number of input pulse cycles. In media with normal group dispersion, the square of the pulse duration is inversely proportional to the number of input pulse cycles due to cubic nonlinearity. In media with anomalous group dispersion, it is shown that due to cubic nonlinearity, few-cycle pulse self-compression decreases with the reduction of the number of cycles in the initial pulse. This pulse self-compression effect has a threshold nature and terminates at a fixed number of cycles of the input pulse. Such a number of cycles is determined by the input intensity and the central frequency of the pulse, as well as by the dispersive and nonlinear characteristics of the medium.
机译:根据其中心频率导出,质量中心运动的速度和最初单周期,双周期,高斯脉冲的简单算术依赖性以及具有随机振荡的随机振荡的高斯脉冲的速度依赖性。初始持续时间和峰场幅度,以及均匀各向同性介电介质介质的分散和非线性特性。在具有正常组色散的介质中,示出了由于非孤零色散,几个循环脉冲持续时间的平方随着输入脉冲循环的数量的第四功率成反比地成反比。在具有正常组色散的介质中,脉冲持续时间的平方与由于立方非线性引起的输入脉冲循环的数量成反比。在具有异常组分散的介质中,示出由于立方非线性,几个周期脉冲自压缩随着初始脉冲中的循环次数的降低而降低。该脉冲自压缩效果具有阈值性质并以输入脉冲的固定数量的循环终止。这种多个循环由脉冲的输入强度和中心频率确定,以及介质的分散和非线性特性。

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