2008•Physical Review AOpen access

Control of light speed: From slow light to superluminal light

Qunfeng Chen, Yong-Sheng Zhang, Bao‐Sen Shi, Guang‐Can Guo

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Abstract

A scheme for controlling light speed from slower-than-$c$ to faster-than-$c$ in an atomic system is presented in this paper. The scheme is based on far detuning Raman effect. Two far detuning coupling fields with small frequency difference will produce two absorptive peaks for the probe field in a $\ensuremath{\Lambda}$ structure, and an optical pump between the two ground states can change the absorptive peaks into enhanced peaks, which makes the normal dispersion between the two peaks change into anomalous dispersion, so the probe field can change from slow light to superluminal propagation.

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What this paper is about

A scheme for controlling light speed from slower-than-$c$ to faster-than-$c$ in an atomic system is presented in this paper. The scheme is based on far detuning Raman effect. Two far detuning coupling fields with small frequency difference will produce two absorptive peaks for the probe field in a $\ensuremath{\Lambda}$ structure, and an optical pump between the two ground states can change the absorptive peaks into enhanced peaks, which makes the normal dispersion between the two peaks change into anomalous dispersion, so the probe field can change from slow light to superluminal propagation.

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Available abstract

A scheme for controlling light speed from slower-than-$c$ to faster-than-$c$ in an atomic system is presented in this paper. The scheme is based on far detuning Raman effect. Two far detuning coupling fields with small frequency difference will produce two absorptive peaks for the probe field in a $\ensuremath{\Lambda}$ structure, and an optical pump between the two ground states can change the absorptive peaks into enhanced peaks, which makes the normal dispersion between the two peaks change into anomalous dispersion, so the probe field can change from slow light to superluminal propagation.

Key concepts: Superluminal motion, Slow light, Dispersion (optics), Physics, Coupling (piping), Speed of light (cellular automaton), Optics, Electromagnetically induced transparency

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