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Toward optical-tweezers-based force microscopy for airborne microparticles

机译:基于光镊的力显微镜用于机载微粒

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Optical tweezers have found widespread application in biological and colloidal physics for the measurement of pN forces over nanometer to micrometer length scales. Similar aerosol-phase measurements of interparticle force have not been reported in spite of the potential to better resolve particle coagulation kinetics. Various refractive index mismatches in the beam path as well as the need to explicitly account for gravity and inertial particle motion provide a number of challenges that must be overcome to make such measurements tractable. In this regard, we demonstrate schemes by which the particle position and trap stiffness may be unambiguously measured using bright-field microscopy with resolution comparable with analogous condensed-phase measurements. Moreover, some of the challenges of working with highly dynamic aqueous particles are introduced and exploited to observe size-dependent phenomena in aerosol optical tweezers. Notably, when combined with cavity-enhanced Raman spectroscopy, this provides a unique opportunity to explore trapping forces over a continuum of particle size and refractive index. It is expected that the methods developed will provide a basis for the measurement of pairwise interaction forces in aerosol optical tweezers while providing a probe of fundamental airborne particle trapping dynamics. (C) 2014 Optical Society of America
机译:光学镊子已经在生物和胶体物理学中得到了广泛的应用,用于测量纳米级至微米级的pN力。尽管有可能更好地解决颗粒凝聚动力学的问题,但尚未报告类似的气溶胶相间力测量结果。光束路径中的各种折射率失配以及显式考虑重力和惯性粒子运动的需求提供了许多挑战,必须克服这些挑战才能使此类测量变得易于处理。在这方面,我们展示了使用明场显微镜可以清晰地测量颗粒位置和捕集阱刚度的方案,其分辨率可与类似的凝结相测量相媲美。此外,引入并利用了高动态水性颗粒的一些挑战,以观察气溶胶光学镊子中尺寸相关的现象。值得注意的是,当与腔增强拉曼光谱结合使用时,这提供了一个独特的机会来探索在连续的粒径和折射率范围内的俘获力。预期开发的方法将为测量气溶胶光学镊子中的成对相互作用力提供基础,同时提供基本的空气中颗粒捕集动力学的探针。 (C)2014年美国眼镜学会

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