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Phoxonic crystals—a new platform for chemical and biochemical sensors

机译:光子晶体—化学和生化传感器的新平台

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摘要

A new sensor platform is based on so-called phoxonic crystals. Phoxonic crystals are structures designed for simultaneous control of photon and phonon propagation and interaction. They are characterized by a periodic spatial modulation of the dielectric constant as well as elastic properties on a common wavelength scale. Multiple scattering of photons and phonons results in a band gap where propagation of both waves is prohibited. The existence of photonic and phononic band gaps opens up opportunities for novel devices and functional materials. The usage of defect modes is an advantageous concept for measurement. The defect also acts as point of measurement. We show theoretically that the properties of the defect mode can be tailored to provide very high sensitivity to optical and acoustic properties of matter confined within a defect cavity or surrounding the defect or being adsorbed at the cavity surface. In this paper, we introduce the sensor platform and analyze the key features of the sensor transduction scheme. Experimental investigations using a macroscopic device support the theoretical findings.
机译:一个新的传感器平台基于所谓的光子晶体。光子晶体是为同时控制光子和声子的传播和相互作用而设计的结构。它们的特征在于介电常数的周期性空间调制以及在常见波长范围内的弹性。光子和声子的多次散射会导致禁带,禁止两个波的传播。光子和声子带隙的存在为新型器件和功能材料打开了机会。缺陷模式的使用是测量的有利概念。缺陷也可以作为测量点。从理论上讲,我们可以对缺陷模式的性质进行调整,以提供对限制在缺陷腔内或缺陷周围或吸附在腔体表面的物质的光学和声学特性的极高灵敏度。在本文中,我们介绍了传感器平台并分析了传感器转换方案的关键特征。使用宏观装置进行的实验研究支持了理论发现。

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