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Power loss analysis in thermally-tuned nanophotonic switch for on-chip interconnect

机译:用于片上互连的热调节纳米光电开关的功率损耗分析

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摘要

Nanophotonic is considered an emerging technology for future many-core systems due to its potentials for low-power and high-bandwidth communications. Nevertheless, challenges such as crosstalk noise and temperature variation of photonic devices significantly reduce the optical signal-to-noise ratio which leads to reliability decrease in the optical network on chips. In this paper, we propose a thermally-tuned symmetric optical switch (TTSOS) and analyze its thermal effects. Using thermal-based adjustment in this design leads to reduce power loss under temperature variation. The functionality of the switch is examined through several numerical simulations with 10Gb/s non-return-to-zero signals. The simulation results show the data transmissions at 10Gb/s with low crosstalk and power penalty less than -50 dB and 0.1 dB, at 1.1x10(-31) bit error rate, respectively. TTSOS improves the reliability in the resonant wavelength shift of micro-ring resonator, as well as the performance of the optical multi-stage networks. Finally, at the system-level, we systematically study the worst case as well as the average insertion loss in Benes-based optical network-on-chip. (C) 2020 Elsevier B.V. All rights reserved.
机译:由于其低功耗和高带宽通信的潜力,纳米光调被认为是未来多核系统的新兴技术。然而,诸如光子器件的串扰噪声和温度变化的挑战显着降低了光学信噪比,这导致芯片上光学网络的可靠性降低。在本文中,我们提出了一种热调对称光学开关(TTSO)并分析其热效应。在这种设计中使用基于热基调整导致在温度变化下降低功率损耗。通过具有10GB / s非返回到零信号的若干数值模拟检查交换机的功能。仿真结果显示10GB / s的数据传输,低串扰和功率损失小于-50 dB和0.1 dB,分别为1.1×10(-31)误码率。 TTSO改善了微环谐振器的谐振波长偏移的可靠性,以及光学多级网络的性能。最后,在系统级别,我们系统地研究了最坏的情况以及基于银行的光网络中的平均插入损耗。 (c)2020 Elsevier B.v.保留所有权利。

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