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Application of two-dimensional spectral surface plasmon resonance to imaging of pressure distribution in elastohydrodynamic lubricant films

机译:二维光谱表面等离子体激元共振在弹性流体动力润滑膜压力分布成像中的应用

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摘要

What we believe to be a novel two-dimensional spectral surface plasmon resonance imaging technique determining pressure distribution in elastohydrodynamic lubricant films is presented. This technique makes use of the spectral characteristics associated with the surface plasmon resonance (SPR) effect, and it provides more spectral information in refractive index mapping than conventional contrast SPR imaging. Two-dimensional imaging is demonstrated and applied to a highly pressurized liquid lubricant trapped inside an elastohydrodynamic lubrication (EHL) dimple. The hydrostatic pressure inside the EHL dimple causes a localized change of the refractive index of the lubrication oil. This also results in a shift in the spectral SPR absorption dip. By monitoring the color changes within the SPR image and calibrating with lubricants of known refractive index profiles, we can obtain a direct measurement of the refractive index distribution within the EHL dimple. PB 2400 lubricant dimples were studied in our experiments. The proposed SPR imaging approach is irrespective of the absolute lubricant film thickness h, therefore overcoming the major limitations of a conventional optical interference technique. With further development of the two-dimensional refractive index mapping technique, widespread applications in various fields are possible, including high-throughput sensors and the detection of bioaffinity interactions.
机译:我们认为是一种新颖的二维光谱表面等离子体共振成像技术,可确定弹性流体动力润滑膜中的压力分布。该技术利用了与表面等离振子共振(SPR)效应相关的光谱特性,并且与常规的对比SPR成像相比,它在折射率映射中提供了更多的光谱信息。二维成像得到了证明,并将其应用于困在弹性流体动力润滑(EHL)凹痕内部的高压液体润滑剂。 EHL凹痕内部的静水压力会引起润滑油折射率的局部变化。这也导致光谱SPR吸收下降的偏移。通过监视SPR图像内的颜色变化并使用已知折射率分布的润滑剂进行校准,我们可以直接测量EHL凹痕内的折射率分布。在我们的实验中研究了PB 2400润滑剂酒窝。所提出的SPR成像方法与润滑剂膜的绝对厚度h无关,因此克服了常规光学干涉技术的主要限制。随着二维折射率映射技术的进一步发展,在各种领域中的广泛应用成为可能,包括高通量传感器和生物亲和力相互作用的检测。

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