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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Observation of arbitrary group velocities of light from superluminal to subluminal on a single atomic transition line - art. no. 013810
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Observation of arbitrary group velocities of light from superluminal to subluminal on a single atomic transition line - art. no. 013810

机译:在单个原子跃迁线上观察从超腔到亚腔的光的任意群速度-艺术。没有。 013810

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We were able to arbitrarily control the speed of a light pulse from subluminal to superluminal velocity by changing only the power of the laser for coupling coherently the single transition between 6 (S1/2F)-S-2=4 and 6 (P3/2F')-P-2=5 in the D-2 line of a Cs atomic vapor system. With weak coupling power, a Gaussian light pulse was propagated superluminally with a negative group velocity v(g)=-c/14 400, which is caused by a highly anomalous dispersion related to an electromagnetically induced absorption. By increasing the coupling power at the same laser frequency, the pulses were propagated with a vacuum speed at the middle power and a subluminal group velocity v(g)=c/3000 at high power, which is caused by a normal dispersion related to an electromagnetically induced transparency. It was also found that group velocities depend largely on polarization combinations. [References: 29]
机译:通过仅改变激光器的功率以在6(S1 / 2F)-S-2 = 4和6(P3 / 2F)之间进行相干耦合,我们能够任意控制光脉冲从腔内速度到超腔速度的速度。 Cs原子蒸气系统的D-2线中的')-P-2 = 5。在弱耦合功率下,高斯光脉冲以负群速度v(g)=-c / 14 400超光速传播,这是由于与电磁感应吸收有关的高度反常色散引起的。通过增加相同激光频率下的耦合功率,脉冲以中等功率的真空速度和大功率的腔内群速度v(g)= c / 3000传播,这是由于与电磁感应的透明度。还发现群速度很大程度上取决于极化组合。 [参考:29]

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