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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Three-dimensional MEMS photonic cross-connect switch design and performance
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Three-dimensional MEMS photonic cross-connect switch design and performance

机译:三维MEMS光子交叉连接开关的设计和性能

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摘要

Photonic cross-connects (PXC) play a key role in all-optical transparent networks. In this paper, the optical design and modeling of a three-dimensional microelectromechanical system (3-D MEMS) based optical switch are discussed. Basic design rules and considerations are reviewed and used to determine the optimum configuration for free-space optical switches with more than 300 ports. The optical performance of a 256 /spl times/ 256 PXC system, including a 347 /spl times/ 347 nonblocking core switch and auxiliary 2 /spl times/ 2 optical switches for 1:1 protection and optical taps for power monitoring, is presented. The core switch has 1.4-dB median insertion loss, 1.5-dB wavelength dependent loss across a broadband of 1260-1625 nm, and a typical polarization dependent loss of 0.1 dB. Environmental tests including temperature and vibration are described.
机译:光子交叉连接(PXC)在全光透明网络中起着关键作用。本文讨论了基于三维微机电系统(3-D MEMS)的光开关的光学设计和建模。审查了基本设计规则和注意事项,并用于确定具有300个以上端口的自由空间光交换机的最佳配置。展示了256 / spl times / 256 PXC系统的光学性能,包括347 / spl times / 347无阻塞核心开关和辅助2 / spl times / 2个用于1:1保护的光开关以及用于功率监控的光抽头。核心开关具有1.4dB的中值插入损耗,在1260-1625 nm宽带范围内的1.5dB波长相关损耗以及0.1dB的典型偏振相关损耗。描述了包括温度和振动在内的环境测试。

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