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Electronics-photonics co-design for robust control of optical devices in dense integrated photonic circuits

机译:电子 - 光子学合作设计致密集成光子电路中光学装置的鲁棒控制

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The increasing requirements in terms of bandwidth and power efficiency demanded by telecommunication, automotive and datacenter applications are pushing copper-based interconnections close to their intrinsic limits [1]. On the same line, the emerging trends on new rack-scale multi-socket computational units are putting pressure on chip-to-chip interconnections, calling for high speed and low-latency performance at a reduced energy and cost [2]. These technological requirements are making copper-based interconnects the bottleneck of high-performance systems, suggesting the use of point-to-point optical connectivity not only for long range communications but also at short or ultra-short distances [3]. With respect to other solid-state solutions, Silicon Photonics (SiP) seems to be the ideal candidate to answer to these needs, as it shares the same fabrication technologies of the microelectronic industry and is therefore expected to play a significant role in the field.
机译:在电信,汽车和数据中心应用所需的带宽和功率效率方面的不断增加的要求正在推动靠近其内在限制的铜基互连[1]。 在同一条线上,新机架式多插槽计算单元的新兴趋势在降低的能量和成本下呼吁高速和低延迟性能进行压力,呼叫高速和低延迟性能[2]。 这些技术要求正在使铜基互连高性能系统的瓶颈,表明不仅用于长距离通信的点对点光学连接,而且在短路或超短距离[3]。 关于其他固态解决方案,硅光子(SIP)似乎是对这些需求的理想候选者,因为它共享微电子行业的相同制造技术,因此预计在该领域中发挥着重要作用。

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