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首页> 外文期刊>Photonics and Nanostructures: Fundamentals and Applications >Design of a label-free photonic crystal refractive index sensor for biomedical applications
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Design of a label-free photonic crystal refractive index sensor for biomedical applications

机译:用于生物医学应用的无标签光子晶体折射率传感器的设计

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摘要

Two photonic crystal optical refractive index sensors have been proposed in this paper. These sensors can be used for detection of basal cell cancer. A rod-type square lattice of GaAs is used for this purpose. The sensor topologies are based on a photonic crystal ring-shaped resonator coupled to two and wave guides respectively. Instead of using ultra-high quality factor cavities for improving the sensitivity, the resonance profile is localized and concentrated on the analyte to achieve good distinction. A 13 nm cavity resonance frequency shift for normal and cancer cells is obtained for detection of basal cell carcinoma. Finite difference time domain method and plane wave expansion methods are used to simulate and analyze the structures. The proposed biosensors have a sensitivity equal to 720 and 638 nm/RIU. The simplicity of the design and its high sensitivity make it a suitable choice for bio-sensing applications.
机译:本文提出了两个光子晶体光学折射率传感器。 这些传感器可用于检测基础细胞癌。 为此目的,GaAs的杆型方形晶格用于此目的。 传感器拓扑基于光子晶环形谐振器,分别耦合到两个和波引导件。 谐振曲线局部化并集中在分析物上,而不是使用超高品质因子腔来提高灵敏度,而不是使用超高品质的因子腔进行浓缩,以实现良好的区别。 获得正常和癌细胞的13nm腔共振频移,用于检测基础细胞癌。 有限差分时域方法和平面波扩展方法用于模拟和分析结构。 所提出的生物传感器的敏感性等于720和638nm / Riu。 设计的简单性及其高灵敏度使其成为生物传感应用的合适选择。

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