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Overview of the EU FP7-project HISTORIC

机译:欧盟FP7项目历史记录概述

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摘要

HISTORIC aims to develop and test complex photonic integrated circuits containing a relatively large number of digital photonic elements for use in e.g. all-optical packet switching. These photonic digital units are all-optical flip-flops based on ultra compact laser diodes, such as microdisk lasers and photonic crystal lasers. These lasers are fabricated making use of the heterogeneous integration of InP membranes on top of silicon on insulator (SOI) passive optical circuits. The very small dimensions of the lasers are, at least for some approaches, possible because of the high index contrast of the InP membranes and by making use of the extreme accuracy of CMOS processing.rnAll-optical flip-flops based on heterogeneously integrated microdisk lasers with diameter of 7.5μm have already been demonstrated. They operate with a CW power consumption of a few mW and can switch in 60ps with switching energies as low as 1.8 fJ. Their operation as all-optical gate has also been demonstrated. Work is also on-going to fabricate heterogeneously integrated photonic crystal lasers and all-optical flip-flops based on such lasers. A lot of attention is given to the electrical pumping of the membrane InP-based photonic crystal lasers and to the coupling to SOI wire waveguides. Optically pumped photonic crystal lasers coupled to SOI wires have been demonstrated already.rnThe all-optical flip-flops and gates will be combined into more complex photonic integrated circuits, implementing all-optical shift registers, D flip-flops, and other all-optical switching building blocks. The possibility to integrate a large number of photonic digital units together, but also to integrate them with compact passive optical routers such as AWGs, opens new perspectives for the design of integrated optical processors or optical buffers. The project therefore also focuses on designing new architectures for such optical processing or buffer chips.
机译:HISTORIC的目的是开发和测试复杂的光子集成电路,该集成电路包含相对大量的数字光子元件,可用于诸如全光分组交换。这些光子数字单元是基于超紧凑型激光二极管(例如微盘激光器和光子晶体激光器)的全光触发器。这些激光器是利用绝缘体上硅(SOI)无源光学电路顶部的InP膜的异质集成制成的。至少在某些方法上,由于InP膜的高折射率对比度以及利用CMOS处理的极高精确度,激光器的尺寸非常小。rn基于异质集成微盘激光器的全光触发器直径为7.5μm的已被证明。它们的CW功耗仅为几mW,并且可以以低至1.8 fJ的开关能量以60ps的速度开关。还证明了它们作为全光闸的操作。制造异质集成光子晶体激光器和基于这种激光器的全光触发器的工作也在进行中。薄膜InP基光子晶体激光器的电泵浦以及与SOI线波导的耦合引起了很多关注。已经证明了与SOI导线耦合的光泵浦光子晶体激光器。rn全光触发器和门将组合成更复杂的光子集成电路,实现全光移位寄存器,D触发器和其他全光触发器切换构建块。将大量光子数字单元集成在一起,以及将它们与紧凑的无源光路由器(如AWG)集成在一起的可能性,为集成光处理器或光缓冲器的设计开辟了新的前景。因此,该项目还将重点放在为此类光学处理或缓冲芯片设计新架构上。

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