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On the Time-Domain Response of Cole-Cole Dielectrics

机译:关于科尔-科尔电介质的时域响应

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摘要

We investigate time-domain electromagnetic pulse propagation in a dispersive lossy dielectric half-space whose properties are described in the frequency-domain by the Cole-Cole model E(omega) velence E_(infinity) + (E_(s) - E_(infinity))/(1 + (i(omega)(tau))~(alpha)), 0 < alpha < 1. With asymptotic techniques we calculate the small-depth impulse response and determine it is infinitely smooth at the wavefront. This result contrasts the case of the Debye medium (alpha velence 1) in which the wavefront supports discontinuities that decay exponentially with depth. Then, with asymptotic and numerical methods we investigate the large-depth impulse response. We find that while the saddle-point method accurately predicts the space-time location of the peak of the response it is of limited applicability in the approximation of such response for times past the arrival of the peak. Significantly, we find the peak of the response for 0 < alpha < 1 arrives earlier than in the case of alpha velence 1. Our asymptotic results are validated with independent results obtained numerically.
机译:我们研究时域电磁脉冲在色散有损介电半空间中的传播,其特性在频域中由Cole-Cole模型E(ω)velence E_(infinity)+(E_(s)-E_(infinity) ))/(1 +(iω(τ)〜α),0

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