Sensor based on angular interrogation of Surface Plasmon Resonance by using an elliptical reflector structure

Laixu Gao, Yan Huang, Songquan Li, Hong-an Ye
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引用次数: 1

Abstract

We report a method to make simplification and improve stability of Surface Plasmon Resonance (SPR) sensor by using an elliptical reflector in angular interrogation. The sensitive plate is K7 glass coated with about 50nm gold film. The centers of sensitive plate and the detector are set on each of the two focus of the elliptical reflector respectively. According to the geometrical optics, the detector on one focus can receive the light reflected by the elliptical reflector from another focus when incident angle of input light changes continuously. In addition, we use an opto-coupler switch to adjust the starting point of the rotary stage. The angular interrogation method has been used to study the performance of the sensor in terms of intrinsic sensitivity that includes the width and shifts of the SPR curve for a given refractive index of sensing layer. SPR curves can be observed through the rotation of angular movement of stepper motor, then the resonance angle of gold film is calculated. The preliminary experimental results confirmed that structure can be used as a steady sensor that could detect refractive index changes by precise measurement of the resonance angle and develop this sensor as a practicable high-stability biosensing device.
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基于椭圆反射结构的表面等离子体共振角探测传感器
本文报道了一种利用椭圆反射器对表面等离子体共振(SPR)传感器进行简化和提高稳定性的方法。感光板为K7玻璃,涂有约50nm的金膜。敏感板和探测器的中心分别设置在椭圆反射镜的两个焦点上。根据几何光学原理,当入射光的入射角连续变化时,一个焦点上的探测器可以接收到另一个焦点上的椭圆反射器反射的光。此外,我们使用光耦合器开关来调整旋转舞台的起点。用角度询问法研究了传感器在固有灵敏度方面的性能,固有灵敏度包括敏感层在给定折射率下SPR曲线的宽度和位移。通过步进电机角运动的旋转,可以观察到SPR曲线,进而计算出金膜的共振角。初步的实验结果证实,该结构可以作为一种稳定的传感器,通过精确测量共振角来检测折射率的变化,并将该传感器发展成为一种实用的高稳定性生物传感装置。
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