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耦合纳米机械谐振器-量子点系统中从慢光到快光的高效光学旋钮

An efficient optical knob from slow light to fast light in a coupled nanomechanical resonator-quantum dot system.

作者信息

Li Jin-Jin, Zhu Ka-Di

机构信息

Department of Physics, Shanghai Jiao Tong University, 800 DongChuan Road, Shanghai 200240, PRChina.

出版信息

Opt Express. 2009 Oct 26;17(22):19874-81. doi: 10.1364/OE.17.019874.

Abstract

We theoretically present a highly efficient optical method to obtain slow and fast light in a coupled system consisting of a nanomechanical resonator and quantum dots in terms of mechanically induced coherent population oscillation (MICPO). Turning on or turning off the specific detuning of pump field from exciton resonance, this coupling system can provide us a direct optical way to obtain the slow or fast group velocity without absorption. Our coupling scheme proposed here works as a fast and slow-light knob and may have potential applications in various domains such as optical communication and biology sensor.

摘要

我们从理论上提出了一种高效的光学方法,用于在由纳米机械谐振器和量子点组成的耦合系统中,通过机械诱导相干布居振荡(MICPO)来获得慢光和快光。开启或关闭泵浦场与激子共振的特定失谐,这种耦合系统可以为我们提供一种直接的光学方法,在无吸收的情况下获得慢或快的群速度。我们在此提出的耦合方案就像一个快慢光旋钮,可能在光通信和生物传感器等各个领域具有潜在应用。

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