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Nanoscale welding aerosol sensing based on whispering gallery modes in a cylindrical silica resonator

机译:圆柱二氧化硅谐振器中基于回音壁模式的纳米级焊接气溶胶传感

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摘要

We report an experimental technique where one uses a standard silica fiber as a cylindrical whispering gallery mode (WGM) resonator to sense airborne nanoscale aerosols produced by electric arc welding. We find that the accumulation of aerosols on the resonator surface induces a measurable red-shift in resonance frequency, and establish an empirical relation that links the magnitude of resonance shift with the amount of aerosol deposition. The WGM quality factors, by contrast, do not decrease significantly, even for samples with a large percentage of surface area covered by aerosols. Our experimental results are discussed and compared with existing literature on WGM-based nanoparticle sensing.
机译:我们报告了一种实验技术,该技术使用标准的二氧化硅纤维作为圆柱体回音壁模式(WGM)谐振器,以感测电弧焊产生的气载纳米级气溶胶。我们发现,气溶胶在谐振器表面的积聚引起共振频率的可测量的红移,并建立了一个经验关系,该关系将谐振位移的大小与气溶胶沉积量联系起来。相比之下,WGM品质因子不会显着降低,即使对于气溶胶覆盖表面积很大的样品也是如此。我们的实验结果进行了讨论,并与基于WGM的纳米粒子传感的现有文献进行了比较。

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