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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Pulse propagation in an atomic medium under spontaneously generated coherence, incoherent pumping, and relative laser phase
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Pulse propagation in an atomic medium under spontaneously generated coherence, incoherent pumping, and relative laser phase

机译:在自发产生的相干性,非相干泵送和相对激光相下的原子培养基中的脉冲传播

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摘要

Influences of spontaneously generated coherence (SGC) and relative phase of laser fields on a probe laser pulse propagating in a three-level cascade atomic medium under incoherent pumping and electromagnetically induced transparency (EIT) are studied theoretically. It is shown that the leading edge of the pulse oscillates during its propagation. Furthermore, the oscillating magnitude is enhanced by growing SGC, however, it can be depressed by choosing a suitable relative phase between the laser fields. Indeed, the probe pulse depends sensitively on the relative phase with a period of 2 pi in which it oscillates strongest at phi = 0, pi and 2 pi; whereas it is unchanged at phi = pi/2 and 3 pi/2. On the other hand, the influences of SGC and the relative phase on the pulse envelope are more effective as growing the incoherent pumping rate.
机译:在理论上,研究了在三级级联原子介质中传播的探针激光脉冲激光场的自发产生的相干(SGC)和相对相的影响。 结果表明,脉冲在其传播期间振荡的前缘。 此外,通过生长SGC来增强振荡幅度,然而,通过在激光场之间选择合适的相对相位,可以按下。 实际上,探针脉冲敏感地依赖于相对相位,其中2 pi的时间为2 pi,其在phi = 0,pi和2 pi上振荡最强; 虽然它在phi = pi / 2和3 pi / 2处保持平静。 另一方面,SGC的影响和脉冲包络上的相对相的影响更有效地增加了不连贯的泵送速率。

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