arXiv · physics/0101068
Signal velocity, causality, and quantum noise in superluminal light pulse propagation
Abstract
We consider pulse propagation in a linear anomalously dispersive medium where the group velocity exceeds the speed of light in vacuum (c) or even becomes negative. A signal velocity is defined operationally based on the optical signal-to-noise ratio, and is computed for cases appropriate to the recent experiment where such a negative group velocity was observed. It is found that quantum fluctuations limit the signal velocity to values less than c.
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A. Kuzmich, A. Dogariu, L. J. Wang, P. W. Milonni, R. Y. Chiao. 2001-01-16. Signal velocity, causality, and quantum noise in superluminal light pulse propagation. https://doi.org/10.1103/physrevlett.86.3925
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