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首页> 外文期刊>Optics and Spectroscopy >Polarization decay of pulses of electromagnetically induced transparency on J=0 -> J=1 -> J=2 degenerate quantum transitions
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Polarization decay of pulses of electromagnetically induced transparency on J=0 -> J=1 -> J=2 degenerate quantum transitions

机译:J = 0-> J = 1-> J = 2上的电磁感应透明脉冲的极化衰减

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The evolution of radiation under conditions of electromagnetically induced transparency in the scheme of degenerate quantum transitions J = 0 -> J = 1 -> J = 2 in the pulsed interaction regime of the fields and with allowance for the Doppler broadening of spectral lines has been analyzed numerically. It has been shown that, if the input coupling radiation is linearly polarized, the circularly polarized input probe pulse splits in the medium into pulses with mutually perpendicular linear polarizations. The direction of polarization of one of these pulses coincides with the direction of polarization of the input coupling field. The distance that the probe pulse travels in the medium until it completely decays decreases with a decrease in both the duration of the input probe pulse and the intensity of the input coupling radiation. A change in the power of the input probe pulse hardly affects the distance required for the decay and the velocity of propagation of linearly polarized pulses in the medium. An increase in the Doppler broadening of spectral lines leads to a decrease in this distance and, simultaneously, to an increase in the energy losses of the probe radiation. Qualitative considerations that explain the physical reason for the investigated effects have been presented.
机译:在场的脉冲相互作用机制中,在简并的量子跃迁J = 0-> J = 1-> J = 2的方案中,在电磁感应透明的条件下辐射的演化已经得到考虑,并且考虑到了谱线的多普勒展宽。数值分析。已经表明,如果输入耦合辐射是线偏振的,则圆偏振的输入探针脉冲在介质中分裂成具有相互垂直的线偏振的脉冲。这些脉冲之一的极化方向与输入耦合场的极化方向一致。探针脉冲在介质中传播直至完全衰减的距离随着输入探针脉冲的持续时间和输入耦合辐射强度的减小而减小。输入探查脉冲功率的变化几乎不会影响衰减所需的距离和线性极化脉冲在介质中的传播速度。频谱线的多普勒加宽的增加导致该距离的减小,并且同时导致探针辐射的能量损耗的增加。已经提出了定性的考虑因素,这些因素解释了所研究影响的物理原因。

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