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Pulse centroid velocity of the Poynting vector

机译:Poynting向量的脉冲质心速度

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摘要

The evolution of the pulse centroid velocity of the Poynting vector for both ultrawideband rectangular and ultrashort Gaussian envelope pulses is presented as a function of the propagation distance in a dispersive, absorptive dielectric material. The index of refraction of the material is described by the Lorentz-Lorenz formula in which a single-resonance Lorentz model is used to describe the mean molecular polarizability. The results show that, as the propagation distance increases above a value that is on the order of an absorption depth at the pulse carrier frequency, the centroid velocity of an ultrawideband/ultrashort pulse tends toward the rate at which the Brillouin precursor travels through the medium. For small propagation distances when the carrier frequency of the optical pulse lies in the absorption band of the material, the centroid velocity can take on superluminal and negative values.
机译:给出了超宽带矩形和超短高斯包络脉冲的Poynting矢量的脉冲质心速度的演变,它是在分散的吸收性介电材料中传播距离的函数。材料的折射率由洛伦兹-洛伦茨公式描述,其中单共振洛伦兹模型用于描述平均分子极化率。结果表明,随着传播距离增加到大于脉冲载波频率处的吸收深度的值,超宽带/超短脉冲的质心速度趋向于布里渊前驱体穿过介质的速率。对于较小的传播距离,当光脉冲的载波频率位于材料的吸收带中时,质心速度可能具有超腔值和负值。

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