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Phase-stepping technique for highly sensitive microscopic surface plasmon resonance biosensor

机译:高灵敏度微观表面等离子体共振生物传感器的相位步进技术

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摘要

In this paper, the phase-stepping technique is applied to improve a phase-sensitive surface plasmon resonance biosensor based on differential interferometry between focused radially polarized and azimuthally polarized cylindrical vector beams. Detailed analysis is presented for the phase-stepping method, and the least squares unwrapping algorithm is employed to detect the phase distribution in correspondence to the refractive index of sample. Benefiting from the phase-stepping technique, both the measurement speed and sensitivity are improved significantly. The proposed sensor maintains high sensitivity of 9.4 × 10~(-7) RIU/1° and a wide dynamic range of 0.35 RIU simultaneously. Furthermore, the real-time binding reaction process of bovine serum albumin with antibody is monitored to verify the system for potential biological applications.
机译:在本文中,基于聚焦径向极化和方位极化圆柱矢量光束之间的差分干涉法,采用相位步进技术改进了相敏表面等离子体共振生物传感器。对相位步进方法进行了详细的分析,并采用最小二乘展开算法检测与样品折射率相对应的相位分布。受益于相位步进技术,测量速度和灵敏度都得到了显着提高。提出的传感器可同时保持9.4×10〜(-7)RIU / 1°的高灵敏度和0.35 RIU的宽动态范围。此外,牛血清白蛋白与抗体的实时结合反应过程受到监控,以验证该系统可用于潜在的生物学应用。

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