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基于偏振干涉测量和角度调制的表面等离子体共振传感器。

Surface plasmon resonance sensor based on polarization interferometry and angle modulation.

作者信息

Sun Zhanliang, He Yonghong, Guo Jihua

机构信息

Laboratory of Optical Imaging and Sensing, Graduate School of Shenzhen, Tsinghua University, China.

出版信息

Appl Opt. 2006 May 1;45(13):3071-6. doi: 10.1364/ao.45.003071.

Abstract

A surface plasmon resonance (SPR) sensing technique based on polarization interferometry and angle modulation is presented. Its sensitivity is not a direct function of variation of reflection intensity, nor of phase shift. Rather, it is a function of the complex reflection coefficient. A three times standard deviation detection limit of 5.1 x 10(-7) refractive index units in a 2 Hz bandwidth is obtained with our experimental setup. A theoretical analysis shows that this technique can provide a wide linear measurement range. Moreover, the sensitivity is insensitive to the thickness of gold films over approximately 5 nm. This SPR sensing technique is suitable for physical, chemical, and biological research.

摘要

提出了一种基于偏振干涉和角度调制的表面等离子体共振(SPR)传感技术。其灵敏度既不是反射强度变化的直接函数,也不是相移的直接函数。相反,它是复反射系数的函数。利用我们的实验装置,在2Hz带宽内获得了5.1×10^(-7)折射率单位的三倍标准偏差检测限。理论分析表明,该技术可提供宽线性测量范围。此外,对于厚度约超过5nm的金膜,灵敏度对其不敏感。这种SPR传感技术适用于物理、化学和生物学研究。

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