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气态纳米层中的最大折射和超光速传播。

Maximal refraction and superluminal propagation in a gaseous nanolayer.

机构信息

Joint Quantum Centre (JQC) Durham-Newcastle, Department of Physics, Durham University, South Road, Durham DH1 3LE, United Kingdom.

出版信息

Phys Rev Lett. 2012 Dec 7;109(23):233001. doi: 10.1103/PhysRevLett.109.233001. Epub 2012 Dec 3.

Abstract

We present an experimental measurement of the refractive index of high density Rb vapor in a gaseous atomic nanolayer. We use heterodyne interferometry to measure the relative phase shift between two copropagating laser beams as a function of the laser detuning and infer a peak index n=1.26±0.02, close to the theoretical maximum of 1.31. The large index has a concomitant large index gradient creating a region with steep anomalous dispersion where a subnanosecond optical pulse is advanced by >100 ps over a propagation distance of 390 nm, corresponding to a group index n(g)=-(1.0±0.1)×10(5), the largest negative group index measured to date.

摘要

我们展示了一种在气态原子纳米层中测量高密度 Rb 蒸汽折射率的实验方法。我们使用外差干涉法测量两束共线激光之间的相对相移作为激光失谐的函数,并推断出峰值折射率 n=1.26±0.02,接近理论最大值 1.31。大折射率伴随着大的折射率梯度,在一个具有陡峭反常色散的区域中,一个亚纳秒的光脉冲在传播距离为 390nm 时可以提前超过 100ps,对应的群折射率 n(g)=-(1.0±0.1)×10(5),这是迄今为止测量到的最大负群折射率。

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