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首页> 外文期刊>Photonics Journal, IEEE >Microring-Based Scalable Polymeric Electrooptic Routing Switch Array: Theory, Architecture, and Design Scheme
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Microring-Based Scalable Polymeric Electrooptic Routing Switch Array: Theory, Architecture, and Design Scheme

机译:基于微环的可扩展聚合电光路由交换机阵列:理论,体系结构和设计方案

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摘要

Device architecture and design scheme of an N × N scalable electrooptic (EO) routing switch array (RSA) are proposed using electric-field-induced EO polymeric microrings. The basic 2 × 2 /cross/bar EO switching element is optimized under 1550-nm wavelength, and the ring radius is only 13.76 μm with <; 10-4 dB/cm bending loss. The basic element reveals a free spectral range (FSR) of 17 nm, a switching voltage of 5 V, and response times of 70/140 ps, and the crosstalk under cross and bar states are about -28.8 and -39.9 dB, respectively. Using 2 × 2 switching elements, 4 × 4, 8 × 8, 16 × 16, and 32 × 32 RSAs are presented, under all routing paths, their maximum insertion losses are 2.57, 5.19, 5.99 and 7.59 dB, respectively, and their maximum crosstalk are - 28.7, -28.7, - 26.27 and -25.07 dB, respectively. Universal structure, routing scheme, electrical/optical responses, and dynamic power consumption (PC) of N × N RSA are then demonstrated, and dependence relations between routing performances and the RSA size N are achieved through data fitting. Comparisons with other reported passive/active routers/switches confirm that, due to superiority on fewer rings, picosecond faster response speed, zero static PC, and lower insertion loss and crosstalk, this polymer-based routing scheme can be a good candidate in on-chip optical systems.
机译:提出了一种使用电场感应的EO聚合物微环的N×N可扩展电光(EO)路由开关阵列(RSA)的设备架构和设计方案。基本的2×2 / cross / bar EO开关元件在1550 nm波长下进行了优化,环半径仅为13.76μm,< 10 -4 dB / cm弯曲损耗。基本元件显示出17 nm的自由光谱范围(FSR),5 V的开关电压以及70/140 ps的响应时间,并且在交叉和棒状状态下的串扰分别约为-28.8和-39.9 dB。使用2×2交换元件,提出了4×4、8×8、16×16和32×32 RSA,在所有路由路径下,它们的最大插入损耗分别为2.57、5.19、5.99和7.59 dB,它们的最大串扰分别为-28.7,-28.7,-26.27和-25.07 dB。然后演示了N×N RSA的通用结构,路由方案,电/光响应和动态功耗(PC),并通过数据拟合实现了路由性能与RSA大小N之间的依赖关系。与其他已报告的无源/有源路由器/交换机的比较证实,由于较少的振铃优势,皮秒级的响应速度更快,静态PC为零,插入损耗和串扰较低,因此这种基于聚合物的路由方案可以在以下情况下很好地使用:芯片光学系统。

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