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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Steady-state absorption-dispersion properties and four-wave mixing process in a quantum dot nanostructure
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Steady-state absorption-dispersion properties and four-wave mixing process in a quantum dot nanostructure

机译:量子点纳米结构的稳态吸收-分散特性和四波混合过程

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With the presence of the signal pulse, a quantum dot (QD) four-level structure interacting with four fields forms a double-cascade configuration. The linear optical properties for amplification, absorption, and dispersion of two weak near-infrared (NIR) lights in this scheme are investigated. It shows that the amplification, transparency, normal and anomalous dispersion of the probe and signal fields, i.e., the two NIR waves, can be achieved by adjusting the relative phase of the applied lasers, the probe detuning, and the two pump Rabi energies appropriately, while when the signal pulse is removed, the nonlinear optical phenomenon four-wave mixing (FWM) originating from quantum interference is demonstrated. A highly efficient FWM process with a NIR mixing field generated can be realized in this system. Such investigation in a semiconductor QD system with flexible design and widely adjustable parameters may provide new possibilities for realizing the efficient generation and gain of NIR waves and manipulating light propagation between subluminal and superluminal in the solid-state materials.
机译:在存在信号脉冲的情况下,与四个场相互作用的量子点(QD)四级结构形成双级联配置。研究了该方案中两个弱近红外(NIR)光的放大,吸收和色散的线性光学特性。结果表明,可以通过适当调节施加的激光的相对相位,探头失谐以及两个泵浦拉比能量,来实现探头和信号场(即两个NIR波)的放大,透明,正常和异常色散。演示了当去除信号脉冲时,源自量子干涉的非线性光学现象四波混频(FWM)。在该系统中可以实现具有生成的NIR混合场的高效FWM过程。在具有灵活设计和广泛可调参数的半导体QD系统中进行的此类研究,可以为实现NIR波的高效生成和增益以及控制固态材料在亚腔和超腔之间的光传播提供新的可能性。

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