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Unified Description of Chirped Gaussian Pulse Propagation of Arbitrary Initial Width in a Multiple Resonance Lorentz Medium

机译:多共振洛仑兹介质中任意初始宽度的Ga高斯脉冲传播的统一描述

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The unified asymptotic approach yields an accurate description of chirped Gaussian pulse propagation in a causally dispersive and absorptive multiple resonance Lorentz medium, and is valid from the slowly-varying envelope to the sub-cycle pulse regimes. The dynamical evolution of the propagated field is directly related to the dynamics of the saddle points of the unified complex phase function. Accordingly, the (total) propagated field is comprised of pulse components each being due to the contribution of a respective relevant saddle point. The instantaneous oscillation frequency and the occurrence/propagation velocity of a stationary point of the envelope, of each such pulse component are intrinsically related with the dynamics of the respective relevant saddle point. Under certain conditions, a stationary point of the envelope of a pulse component occurs when the respective saddle point trajectory intersects the real frequency axis, and it travels with the group velocity at this frequency crossing value.
机译:统一渐近方法可精确描述因果色频散和吸收性多重共振Lorentz介质中chi高斯脉冲的传播,从缓慢变化的包络到子周期脉冲范围都是有效的。传播场的动态演化与统一的复相位函数的鞍点的动力学直接相关。因此,(全部)传播场由脉冲分量组成,每个脉冲分量是由于各自相关的鞍点的贡献。每个这样的脉冲分量的瞬时振荡频率和包络线的固定点的发生/传播速度本质上与各个相关鞍点的动力学有关。在某些条件下,当相应的鞍点轨迹与实际频率轴相交时,会出现脉冲分量的包络的静止点,并且该静止点以群速度在此频率交叉点处移动。

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