首页> 外国专利> SENSITIVITY ENHANCEMENT IN GRATING COUPLED SURFACE PLASMON RESONANCE BY AZIMUTHAL CONTROL

SENSITIVITY ENHANCEMENT IN GRATING COUPLED SURFACE PLASMON RESONANCE BY AZIMUTHAL CONTROL

机译:通过方位角控制增强耦合表面等离激元共振中的灵敏度

摘要

A method and a system for the enhancement of the sensitivity in surface plasmon resonance (SPR) sensors based metallic grating by exploiting the conical configuration is presented. We consider the propagation of surface plasmon polaritons (SPPs) excited by light from the visible to infrared spectrum range, incident on a plasmonic grating at different directions by varying both the zenith and azimuthal angles. For specific azimuthal angles, SPPs propagate in the grating plane perpendicular to the incident light momentum. This is the condition that allows increasing the number of different excited SPPs modes largely. We exploit this effect to increase the sensor sensitivity with the change of refractive index of thin film on the plasmonic grating surface. Polarization effects also contribute to a further modes enhancement and increase the sensitivity. A scheme for a lab-on-chip implementation of a system that allows a parallel detection in microfluidic channels has been shown.
机译:提出了一种通过利用锥形构造来提高基于表面等离子体激元共振(SPR)传感器的金属光栅灵敏度的方法和系统。我们考虑了由可见光到红外光谱范围内的光激发的表面等离激元极化子(SPPs)的传播,通过改变天顶角和方位角,它们以不同方向入射在等离激元光栅上。对于特定的方位角,SPP在垂直于入射光动量的光栅平面中传播。这是允许大大增加不同的激发SPP模式数量的条件。我们利用这种效应来提高传感器的灵敏度,以改变等离激元光栅表面上薄膜的折射率。偏振效应还有助于进一步增强模式并提高灵敏度。已经示出了允许在微流体通道中进行并行检测的系统的芯片实验室实施方案。

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