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Optical knobs from slow- to fast-light with gain in low-dimensional semiconductor heterostructures

机译:低维半导体异质结构中的增益从慢到快的光学旋钮,具有增益

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摘要

The light pulse propagation through semiconductor quantum-well heterostructures under realistic experimental conditions is studied analytically with the Schrodinger equations. It is shown that slow light and superluminal propagation with gain can be observed by varying the relative phase and the strength of the applied fields. Such investigation may open up the possibility to control the light propagation and may lead to potential applications such as high-fidelity optical delay lines, optical buffers and optical communication in quantum wells solid materials.
机译:利用Schrodinger方程对在实际实验条件下通过半导体量子阱异质结构传播的光脉冲进行了分析研究。结果表明,通过改变相对相位和所施加场的强度,可以观察到缓慢的光和超光速传播的增益。这样的研究可能会打开控制光传播的可能性,并可能导致潜在的应用,例如高保真光延迟线,光缓冲器和量子阱固体材料中的光通信。

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