论文标题

PCM-NET:可调纳米光子设备建模的葡萄干化型相变材料的折射率数据库

PCM-net: A refractive index database of chalcogenide phase change materials for tunable nanophotonic device modelling

论文作者

Kim, Hyun Jung, Sohn, Jung-woo, Hong, Nina, Williams, Calum, Humphreys, William

论文摘要

最近,基于清质化的玻璃相变材料(PCM)已将实用性作为一系列纳米摄影设备的调谐材料。由于它们的低损失,超快开关速度和宽波带操作,PCM被集成到越来越多的下一代可调组件中,包括集成的光子开关,超出表面光学和可调频谱过滤器。尽管如此,基于PCM的设备的建模是具有挑战性的,这既取决于在不同阶段状态下实验衍生的材料特性的准确表示,又是整个研究界结果的标准化。在这项工作中,我们介绍了PCMNET,这是一个在线数据库,该数据库的复杂折射率索引(例如Gesbte)是一个可访问且索引的存储库,用于整个PCM社区的数据共享。在许多学术研究文章中,无定形和结晶状态之间的折射率(N)和灭绝系数(K)直接从实验衍生的数据中提取,并整理到材料资源数据库中。由于与我们的数据收集方法相关的不准确性,该数据得到了通过商业椭圆分析软件包WVase获得的其他计算生成的数据。为了演示PCMNET的实用程序,我们使用与数据库收集的PCM的光学属性一起提供了NASA应用程序驱动的设备优化示例。我们预计数据库为PCM社区提供了极大的用途,PCMNET启用了协调的研究工作,将促进共享存储库,以选择适合可调纳米光子设备设计的适当PCM,以用于一系列应用程序。

Recently, chalcogenide glass based phase change materials (PCMs) have shown utility as a tuning material for a range of nanophotonic devices. Owing to their low loss, ultrafast switching speeds and wide waveband operation, PCMs are integrated in an increasing number of next generation tunable components, including integrated photonic switches, metasurface optics and tunable spectral filters. Nonetheless, modelling of PCM-based devices is challenging, both in terms of accurate representation of experimentally-derived material properties in different phase states, and standardization of results across the research community. In this work, we introduce PCMnet, an online database of the complex refractive indices of a variety of chalcogenide glass PCMs (such as GeSbTe), as an accessible and indexed repository for data sharing across the PCM community. Refractive indices (n) and extinction coefficients (k) between amorphous and crystalline states are directly extracted from experimentally-derived data in numerous academic research articles, and collated into the material resource database. Due to the inaccuracies associated with our data collection methods, this data is supplemented with additional computationally-generated data, obtained through WVASE, a commercial ellipsometry analysis software package. To demonstrate the utility of PCMnet, we provide a NASA application-driven device optimization example using the optical properties of PCMs collected with our database. We anticipate the database providing great use to the PCM community and coordinated research efforts enabled by PCMnet will promote the shared repository for the selection of appropriate PCMs for tunable nanophotonic device design for a range of applications.

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