Rotationally Symmetric Nanowire Array-based Virus Detection: Single or Multiple Arrays?

M. M. Hassan, Md. Zunaid Baten
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Abstract

In this work we compare the prospect of detecting virus-like particles using single and multiple arrays of rotationally symmetric array of silicon nanowires. Taking the dimension and geometry of the Coronavirus as a reference, resonant wavelength shift and quality factor change of the whispering gallery mode of the nanowire array in the presence of one and two viruses are evaluated employing finite difference time domain analysis technique. For a single coronavirus having protein spike, the maximum shift of resonant wavelength is found to be about 5 nm, whereas for two viruses the shift can be as high as 9 nm. However, interestingly, for two viruses the shift appear to change periodically depending on relative location of the virus particles. As far as multiple arrays for virus detection is concerned, the quality factor of the most strongly confined whispering gallery mode appears to have been reduced by 50% or more because of mode-leakage resulting from coupling between the nanowire arrays. Such weaker confinement of the optical field though may have a diminishing effect on the signal to noise ratio during practical measurements, the detection sensitivity appears to have improved significantly because of the sustenance of whispering gallery resonant modes in the adjacent nanowire arrays.
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基于旋转对称纳米线阵列的病毒检测:单个还是多个阵列?
在这项工作中,我们比较了使用单阵列和多个旋转对称硅纳米线阵列检测病毒样颗粒的前景。以冠状病毒的尺寸和几何形状为参考,采用时域有限差分分析技术,对一种病毒和两种病毒存在时纳米线阵列低语廊模式的共振波长位移和质量因子变化进行了计算。对于具有蛋白尖峰的单个冠状病毒,谐振波长的最大位移约为5纳米,而对于两种病毒,谐振波长的最大位移可高达9纳米。然而,有趣的是,对于两种病毒来说,这种变化似乎是周期性的,这取决于病毒颗粒的相对位置。就用于病毒检测的多个阵列而言,由于纳米线阵列之间的耦合导致的模式泄漏,最强烈受限低语廊模式的质量因子似乎降低了50%或更多。这种较弱的光场限制虽然在实际测量中对信噪比的影响可能会减弱,但由于邻近纳米线阵列中存在低语廊谐振模式,检测灵敏度似乎得到了显着提高。
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