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Gain-assisted superluminal light propagation

机译:增益辅助超光传播

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摘要

Einstein's theory of special relativity and the principle of causality imply that the speed of any moving object cannot exceed that of light in a vacuum (c). Nevertheless, there exist various proposals for observing faster-than-c propagation of light pulses, using anomalous dispersion near an absorption line, nonlinear and linear gain lines, or tunnelling barriers. However, in all previous experimental demonstrations, the light pulses experienced either very large absorption or severe reshaping, resulting in controversies over the interpretation. Here we use gain-assisted linear anomalous dispersion to demonstrate superluminal light propagation in atomic caesium gas. The group velocity of a laser pulse in this region exceeds c and can even become negative, while the shape of the pulse is preserved. We measure a group-velocity index of n_g = - 310( ± 5); in practice, this means that a light pulse propagating through the atomic vapour cell appears at the exit side so much earlier than if it had propagated the same distance in a vacuum that the peak of the pulse appears to leave the cell before entering it. The observed superluminal light pulse propagation is not at odds with causality, being a direct consequence of classical interference between its different frequency components in an anomalous dispersion region.
机译:爱因斯坦的狭义相对论和因果关系原理表明,任何运动物体的速度都不能超过真空中的光速(c)。然而,存在使用吸收线,非线性和线性增益线或隧穿势垒附近的反常色散来观察光脉冲快于c的传播的各种建议。然而,在所有先前的实验演示中,光脉冲都经历了非常大的吸收或严重的重塑,从而导致了有关解释的争议。在这里,我们使用增益辅助的线性异常色散来演示超发光在原子铯气体中的传播。在保持该脉冲的形状的同时,该区域中的激光脉冲的群速度超过c甚至可以变为负。我们测得的群速度指数为n_g =-310(±5);实际上,这意味着通过原子蒸气池传播的光脉冲出现在出口侧的时间要比在真空中传播相同距离的时间早得多,以至于脉冲的峰值似乎在进入池之前就离开了该池。观察到的超光脉冲传播与因果关系并不矛盾,这是其在异常色散区域中不同频率分量之间经典干扰的直接结果。

著录项

  • 来源
    《Nature》 |2000年第6793期|p.277-279|共3页
  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然科学总论;
  • 关键词

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