首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Ultrafast GaN/AlN modulator based on quantum dot for terabit all-optical communication
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Ultrafast GaN/AlN modulator based on quantum dot for terabit all-optical communication

机译:基于量子点的超快速GaN / AlN调制器,用于兆位全光通信

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摘要

An ultrafast all-optical modulator based on spherical quantum dot using electromagnetically induced transparency (EIT) technique in GaN/AlN structure, associated with inter-sublevel transitions, is proposed and analyzed. The aim of this paper is to modify and enhance the main parameters of an all-optical modulator such as, power consumption, modulation depth, maximum bit-rate and band-width. To realize these points, we have proposed a suitable quantum dot structure based on EIT in a strained GaN/AlN, with an internal barrier. Simulations show this barrier enhances the dot optical properties, such as dipole matrix element, linear susceptibility, and hence absorption coefficient, reducing the power consumption and increasing the modulation depth. Furthermore, using control signal in EIT process, carriers are driven from an upper state to a lower state from where they rapidly decay to the ground state increasing the modulation bit-rate and band-width.
机译:提出并分析了一种基于球形量子点的超快全光调制器,该调制器采用了GaN / AlN结构中的电磁感应透明(EIT)技术,并与亚层间跃迁有关。本文的目的是修改和增强全光调制器的主要参数,例如功耗,调制深度,最大比特率和带宽。为了实现这些观点,我们提出了一种基于EIT的合适的量子点结构,该结构在具有内部势垒的应变GaN / AlN中。仿真表明,该势垒增强了点光学特性,例如偶极矩阵元素,线性磁化率,从而提高了吸收系数,从而降低了功耗并增加了调制深度。此外,在EIT过程中使用控制信号,载波从较高状态驱动到较低状态,从那里迅速衰减到基态,从而增加了调制比特率和带宽。

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