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Passive Temperature Stabilization of Silicon Photonic Devices Using Liquid Crystals

机译:使用液晶的硅光子器件的被动温度稳定

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In this work we explore the negative thermo-optic properties of liquid crystal claddings for passive temperature stabilization of silicon photonic integrated circuits. Photonic circuits are playing an increasing role in communications and computing, but they suffer from temperature dependent performance variation. Most existing techniques aimed at compensation of thermal effects rely on power hungry Joule heating. We show that integrating a liquid crystal cladding helps to minimize the effects of a temperature dependent drift. The advantage of liquid crystals lies in their high negative thermo-optic coefficients in addition to low absorption at the infrared wavelengths.
机译:在这项工作中,我们探索了液晶覆层对于硅光子集成电路的被动温度稳定化的负热光学特性。光子电路在通信和计算中起着越来越重要的作用,但是它们受温度影响而导致性能变化。旨在补偿热效应的大多数现有技术都依靠耗电的焦耳加热。我们表明,集成液晶覆层有助于最大程度地降低温度漂移的影响。液晶的优点在于它们的高负热光系数,以及在红外波长下的低吸收。

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