首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Study of Goos-Honchen shifts of partially coherent light fields using a triple quantum dot system in the presence of giant Kerr nonlinearity
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Study of Goos-Honchen shifts of partially coherent light fields using a triple quantum dot system in the presence of giant Kerr nonlinearity

机译:存在巨大Kerr​​非线性的三重量子点系统研究部分相干光场的Goos-Honchen位移

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摘要

The coherent coupling between three quantum dots via tunneling fields leads to double tunneling-induced transparency and giant Kerr nonlinearity with vanishing absorption. This creates the possibility to achieve self-phase modulation in semiconductor nanostructures via controllable tunneling under the conditions of low light levels. As a result, a considerably high refractive index can be obtained. We suggest an intracavity medium which consists of triple quantum dot molecules to control the Goos-Honchen (GH) shifts in the reflected light. For a suitable design of a triple quantum dot system, our results show that relatively large positive and negative GH shifts are achievable, without significant distortion, using partially coherent incident light fields. (C) 2016 Optical Society of America
机译:通过隧穿场的三个量子点之间的相干耦合导致双隧穿引起的透明性以及吸收消失的巨大Kerr​​非线性。这创造了在低光照条件下通过可控隧穿实现半导体纳米结构中自相调制的可能性。结果,可以获得相当高的折射率。我们建议使用由三重量子点分子组成的腔内介质来控制反射光中的Goos-Honchen(GH)位移。对于三量子点系统的合适设计,我们的结果表明,使用部分相干入射光场,可以实现相对较大的正和负GH偏移,而不会出现明显的失真。 (C)2016美国眼镜学会

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