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One-dimensional defective photonic crystals for the sensing and detection of protein

机译:蛋白质传感和检测的一维缺陷光子晶体

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摘要

The sensing of protein is of great importance because of its prominent role in building and repairing tissues. In this work, we present a simple design for the detection and sensing of protein using one-dimensional defective photonic crystals. The main idea of our work is included in the theoretical investigation of the transmittance properties of the resonant mode produced inside the photonic band gap. Our study uses the characteristic matrix method and curve fitting. The main reason for our study is to detect the concentration of a protein solution using an efficient, accurate, and simple method. Here, the defect layer is filled with a protein solution. Our idea depends on two hypotheses, and the first one is based on the appearance of a resonant peak on the photonic band gap. The second one depends on a change in the position of this resonant peak with the concentration of the protein solution. The effect of many parameters on the performance of our sensor, such as the thickness of the defect layer and the sensitivity, is demonstrated. The numerical results could present a simple way to design an accurate, stable, efficient, and low-cost protein sensor compared to other current methods and techniques. (C) 2019 Optical Society of America.
机译:由于其在建造和修复组织方面的突出作用,蛋白质的感觉具有重要意义。在这项工作中,我们使用一维缺陷光子晶体来提出一种简单的设计,用于检测和感测蛋白质。我们的作品的主要思想包括在光子带隙内产生的谐振模式的透射性能的理论研究中。我们的研究使用特征矩阵方法和曲线配件。我们研究的主要原因是使用高效,准确和简单的方法检测蛋白质溶液的浓度。这里,缺陷层填充有蛋白质溶液。我们的想法取决于两个假设,第一个基于光子带隙的共振峰的外观。第二个取决于该共振峰的位置的变化与蛋白质溶液的浓度。对许多参数对我们传感器性能的影响,例如缺陷层的厚度和灵敏度。与其他电流方法和技术相比,数值结果可以提出一种设计精确,稳定,高效和低成本的蛋白传感器的简单方法。 (c)2019年光学学会。

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