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Active-Tuning and Polarization-Independent Absorber and Sensor in the Infrared Region Based on the Phase Change Material of Ge2Sb2Te5 (GST)

机译:基于Ge2Sb2Te5(GST)相变材料的红外区域中主动调谐和偏振无关的吸收器和传感器

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摘要

Phase-change materials (PCMs), possessing thermo-optic and thermo-electric properties, have constantly enabled the rewritable optical data storage and the commercialized phase-change memory devices. In particular, Ge2Sb2Te5 (GST) has been considered for configurable photonics applications, such as active dielectric metasurface. In this paper, we report an active absorber with metal-insulator-metal (MIM) scheme with GST in the infrared region. The absorber consists of Al disk and reflective Al film with a GST spacer layer. Extraordinary absorption with peaks of more than 90% can be achieved over a broad bandwidth, attributing to highly confined gap surface plasmon resonance. In addition, the absorption can be tuned via adjusting the proportion of GST crystallization, which is a unique advantage to design active device. Meanwhile, the absorption is polarization-independent owing to its structural symmetry. Furthermore, we introduce the designed absorber to the application of sensing. This nearly perfect absorbing strategy offers great potential in sensing applications due to its flexibility and polarization-independence.
机译:具有热光和热电特性的相变材料(PCM)始终使可重写光学数据存储和商业化的相变存储设备成为可能。特别是,Ge2Sb2Te5(GST)已被考虑用于可配置的光子应用,例如有源介电超表面。在本文中,我们报告了一种在红外区域采用GST的金属-绝缘体-金属(MIM)方案的有源吸收器。吸收体由铝盘和具有GST隔离层的反射铝膜组成。在宽带宽范围内,可以实现峰值超过90%的非凡吸收,这归因于高度受限的间隙表面等离子体激元共振。此外,可以通过调节GST结晶的比例来调节吸收率,这是设计有源器件的独特优势。同时,由于其结构对称性,吸收是偏振无关的。此外,我们将设计的吸收器介绍给传感应用。这种几乎完美的吸收策略因其灵活性和偏振无关性而在传感应用中具有巨大潜力。

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