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Studies of an Optimized Two-Channel Surface Plasmon Resonance Interferometer for Sensing Gas Flows

机译:用于传感气体流动的优化双通道表面等离子体共振干涉仪的研究

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The objective of this work was to demonstrate how joining surface plasmon resonance (SPR) with interferometry provides a high sensitivity molecular sensor, especially for low molecular weight gases. This paper reports how various parameters influence the performance of the two-channel surface plasmon resonance interferometer (SPRI) laboratory system. Much of the effort was to achieve good reproducibility and to reduce the sources of noise and drift. This SPRI design uses a Mach-Zehnder interferometer (MZI) that allows for measurements with a single detector or with a digital camera. Results both in detector and camera modes using the optimize system are reported. In the absence of functionalization of the gold film, it is assummed that sensing was primarily due to the near-field photonic gradient forces generated by the evanescent electric fields at the gold film that forms a dielectric layer over the gold. The calibration of recent experimental studies in detector mode of dry N_2 flow showed that the SPRI technique has a sensitivity of about 1 part in 10~7 RIU (RIU =refractive index units). The sensitivity to milliliters/min of anhydrous NH3 mixed in 1.5 liters/min of dry N_2 flow is estimated to be <1 part in 10~8 RIU.
机译:这项工作的目的是证明连接表面等离子体共振(SPR)与干涉测量提供高灵敏度分子传感器,特别是对于低分子量气体。本文报道了各种参数如何影响双通道表面等离子体共振干涉仪(SPRI)实验室系统的性能。大部分努力是达到良好的再现性,并减少噪音和漂移的来源。该Spri设计使用Mach-Zehnder干涉仪(MZI),其允许用单个探测器或数码相机进行测量。结果报告了使用优化系统的检测器和相机模式。在没有金膜的官能化的情况下,暗示的是,感测主要是由于由在金上形成介电层的金膜处的渐逝电场产生的近场光子梯度力。校准近期检测器的DREN N_2流动模式的实验研究表明,SPRI技术在10〜7 RIU(RIU =折射率单元)中具有约1部分的敏感性。估计在1.5升/ min的1.5升/ min中混合的无水NH 3的毫升/ min的敏感性估计为<1部分在10〜8的RIU中。

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