All-optical switching by entangling quantum dot states in a photonic crystal cavity

G. Manzacca, K. Hingerl, G. Cincotti
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Abstract

We analyze the behaviour of a quantum dot embedded in a photonic crystal add-drop filter and in a direct coupled photonic crystal microcavity for optical signal processing applications. The joint effect of dipole induced transparency and electromagnetic induced transparency, considering a cascade configuration of the quantum dot, are used to modify the behaviour of the whole system. The mathematical model and a number of different conditions for tuning the frequency response of the filters are derived for application in all-optical switching and wavelength tunable devices.
光子晶体腔中纠缠量子点状态的全光开关
我们分析了嵌入光子晶体加降滤波器和直接耦合光子晶体微腔中的量子点的行为,用于光信号处理。考虑到量子点的级联结构,利用偶极子诱导透明和电磁感应透明的联合效应来改变整个系统的行为。推导了用于全光开关和波长可调谐器件的滤波器频率响应调谐的数学模型和若干不同条件。
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