首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >Slow and fast light propagation and controllable switch at lambda=1.55 mu m in a photonic crystal with a defect layer doped by an InAs/GaAs quintuple-coupled quantum dot molecule nanostructure
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Slow and fast light propagation and controllable switch at lambda=1.55 mu m in a photonic crystal with a defect layer doped by an InAs/GaAs quintuple-coupled quantum dot molecule nanostructure

机译:在λ=1.55μm的慢速和快速光传播和可控开关在光子晶体中,具有由InAs / GaAs Quintuple耦合量子点分子纳米结构掺杂的缺陷层

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摘要

The transient and steady-state behavior of the probe absorption and dispersion at 1.55 mu m wavelength through a 1D photonic crystal with a defect layer doped by an InAs/GaAs quintuple quantum dot molecule nanostructure are discussed. We show that the group velocity of a light pulse can be controlled just by controlling the rate of incoherent pumping and interdot tunneling. We also investigate the electro-optical switching time of light propagation from subluminal to superluminal or vice versa. The time required to switch from subluminal to superluminal light propagation is found to be in the range 17-34 ps. Such controllable optical properties in a 1D photonic crystal with a defect layer may provide some new possibilities for technological applications in optoelectronics, solid-state quantum information science and systems dealing with signal processing.
机译:讨论了探针吸收和分散的瞬态和稳态行为,通过1D光子晶体,其具有由InAS / GaAs Quintup量子点分子纳米结构掺杂的缺陷层。 我们表明,可以通过控制非连贯式泵送和鸟盘隧穿的速率来控制光脉冲的群体速度。 我们还研究了从Subluminal到Superluminal的光传播的电光切换时间,反之亦然。 发现从Subluminal切换到超级漏光传播所需的时间在17-34 ps的范围内。 具有缺陷层的1D光子晶体中的这种可控光学特性可以为光电子,固态量子信息科学和处理信号处理的系统中的技术应用提供一些新的可能性。

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