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Generation of a pilot phase pulse during the propagation of slow elliptically polarized pulses in a medium under coherent population trapping

机译:在相干人口陷阱下在介质中传播慢椭圆偏振脉冲期间产生导频脉冲

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摘要

Propagation of elliptically polarized light pulses in a medium of two-level atoms with degenerate energy levels under coherent population trapping has been studied within the density-matrix formalism and reduced Maxwell's equation. It has been shown that ellipticity pulses and the orientation angle of the polarization ellipse move with a deceleration. The analytical expression for the group velocity of an arbitrary J → J dark transition (J is an integer) has been derived. In addition, a previously unknown effect of forced phase modulation under the variation of the spatial orientation of the polarization ellipse has been discovered. This phase modulation includes a pilot pulse passing through the medium at the speed of light in vacuum and a slow pulse moving synchronously with the pulse of the orientation angle.
机译:在相干人口陷阱下,在具有简并能级的两能级原子的介质中,椭圆偏振光脉冲的传播已在密度矩阵形式和简化的麦克斯韦方程组内进行了研究。已经表明,椭圆度脉冲和偏振椭圆的取向角随着减速度而移动。推导了任意J→J暗跃迁(J为整数)的群速度的解析表达式。另外,已经发现了在偏振椭圆的空间取向的变化下强制相位调制的先前未知的效果。该相位调制包括以真空中的光速通过介质的导频脉冲和与取向角的脉冲同步移动的慢脉冲。

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