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Processing of organic electro-optic materials for commercial applications

机译:用于商业应用的有机电光材料的处理

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Ultrafast telecommunications, computing, data processing, and sensing are critical to meeting the demands of modern and next generation networking, data transmission, and communications. Hybrid organic electro-optic (OEO) systems enable high-speed, energy-efficient, chip integrated solutions that significantly surpass the SWaP-CP of incumbent material technologies. Current technology infrastructure is facing constraints in computing speed, network capacity, and power efficiency while OEO materials integrated on-chip offer a scalable, market-transforming solution that enables "more than Moore" growth. Recent research milestones demonstrate OEO materials integrated into nanoscale waveguides, yielding > 500 GHz EO bandwidth, power consumption < 100 aJ/bit, and device footprints < 10 μm2.1,2,3 This performance has the potential to transform computing, enable ultrafast digital signal processing, 5G+ telecommunications, sensing, and electromagnetic interference (EMI/EMP) resilience. Key to enabling such commercial and governmental applications is the efficient processing of the materials when integrating into devices at large scale. In addition, materials must meet standard requirements for stability when exposed to varied environmental conditions including heat, humidity, and cold shock. Herein we describe recent results on the reliability of commercially available OEO materials. We also present a plan for these materials to be integrated into SOH and POH devices, and processed using existing commercial semiconductor and photonics foundry infrastructure. With these recent results demonstrating promising environmental stability, OEO materials are poised to be integrated into commercial SOH and POH devices at scale. Nonlinear Materials Corporation (NLM) develops OEO materials and engineers production/integration solutions for photonics devices through deep partnerships. High performing OEO materials are available today.
机译:UltraFast电信,计算,数据处理和感测对于满足现代和下一代网络,数据传输和通信的需求至关重要。混合动力有机电光(OEO)系统实现高速,节能,芯片集成解决方案,显着超越了现有材料技术的Swap-Cp。目前的技术基础设施正面临着计算速度,网络容量和功率效率的限制,而OEO材料集成在芯片上集成了可扩展的市场转换解决方案,可实现“超过摩尔”的增长。最近的研究里程碑展示了集成到纳米级波导的OEO材料,屈服> 500 GHz EO带宽,电力消耗<100 AJ /位,以及设备占用脚印<10μm2.1,2,3该性能有可能改变计算,使UltraFast Digital信号处理,5G +电信,传感和电磁干扰(EMI / EMP)弹性。支持这种商业和政府应用的关键是在大规模集成到设备中时的有效处理。此外,在暴露于不同的环境条件下,材料必须满足稳定性的标准要求,包括热,湿度和冷休克。在此,我们描述了近来导致市售OEO材料的可靠性的结果。我们还为这些材料展示了将这些材料集成为SOH和POH设备,并使用现有的商业半导体和光子铸造基础设施进行处理。凭借这些最近的结果,展示了有希望的环境稳定性,OEO材料准备以规模集成到商业SOH和POH设备中。非线性材料公司(NLM)通过深层伙伴关系开发了OEO材料和工程师生产/集成解决方案,为光子学设备。今天可以提供高性能的OEO材料。

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