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利用多量子阱双稳态和电光器件实现光控数据路由的演示。

Demonstration of optically controlled data routing with the use of multiple-quantum-well bistable and electro-optical devices.

作者信息

Koppa P, Chavel P, Oudar J L, Kuszelewicz R, Schnell J P, Pocholle J P

出版信息

Appl Opt. 1997 Aug 10;36(23):5706-16. doi: 10.1364/ao.36.005706.

Abstract

We present experimental results on a 1-to-64-channel free-space photonic switching demonstration system based on GaAs/GaAlAs multiple-quantum-well active device arrays. Two control schemes are demonstrated: data transparent optical self-routing usable in a packet-switching environment and direct optical control with potential signal amplification for circuit switching. The self-routing operation relies on the optical recognition of the binary destination address coded in each packet header. Address decoding is implemented with elementary optical bistable devices and modulator pixels as all-optical latches and electro-optical and gates, respectively. All 60 defect-free channels of the system could be operated one by one, but the simultaneous operation of only three channels could be achieved mainly because of the spatial nonhomogeneities of the devices. Direct-control operation is based on directly setting the bistable device reflectivity with a variable-control beam power. This working mode turned out to be much more tolerant of spatial noises: 37 channels of the system could be operated simultaneously. Further development of the system to a crossbar of N inputs and M outputs and system miniaturization are also considered.

摘要

我们展示了基于GaAs/GaAlAs多量子阱有源器件阵列的1到64通道自由空间光子交换演示系统的实验结果。演示了两种控制方案:可用于分组交换环境的数据透明光学自路由,以及用于电路交换的具有潜在信号放大功能的直接光学控制。自路由操作依赖于对每个分组头中编码的二进制目的地址的光学识别。地址解码分别通过基本光学双稳器件和调制器像素实现,它们分别用作全光锁存器和电光与门。该系统的所有60个无缺陷通道都可以逐一操作,但主要由于器件的空间不均匀性,只能实现三个通道的同时操作。直接控制操作基于用可变控制光束功率直接设置双稳器件的反射率。事实证明,这种工作模式对空间噪声的容忍度要高得多:该系统的37个通道可以同时操作。还考虑了将该系统进一步发展为N输入和M输出的交叉开关以及系统小型化。

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