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Comparison of the permittivity sensing capabilities of graphene-based nanohybrids and metal nanoparticle-based nanohybrids

机译:基于石墨烯基纳米油脂和基于金属纳米粒子基纳米油交的介电常积极感测能力的比较

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Nanohybrid comprising of a nanoresonator and a quantum emitter have shown enhanced optical properties compared to its constituents. Such nanohybrids are highly sensitive to their surrounding medium permittivity, making them suitable for sensing applications which relies on the background permittivity. This feature is a result of the change in resonance conditions in the nanoresonator, which is part of the nanohybrid. Here we investigate how different nanoresonators affect the sensing capabilities of the nanohybrid and use that information to make recommendations on the best nanores-onator for the nanohybrid depending on the application. Our analysis is based on cavity quantum electrodynamics formalism and thus rigorous and accurate. Our results indicate that the graphene resonator based nanohybrids can be used to detect broader permittivity range than MNP based nanohybrids.
机译:与其成分相比,包含纳米酮和量子发射器的纳米嗜含量显示出增强的光学性质。这种纳米冬次对其周围的介质介质敏感性非常敏感,使得它们适用于传感依赖于背景介电常数的应用。该特征是纳米管中的共振条件变化的结果,其是纳米冬小麦的一部分。在这里,我们研究了不同的纳米腔器如何影响纳米冬小麦的传感能力,并使用该信息根据应用提出纳米冬小麦的最佳纳米ONOR的建议。我们的分析基于空腔量子电动力形式,因此严谨和准确。我们的结果表明,石墨烯谐振器的纳米次冬冬胺可用于检测比基于MNP的纳米油状物更广泛的介质范围。

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