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Nonclassical polarization effects in fluorescence emission spectra from microdroplets

机译:微滴的荧光发射光谱中的非经典偏振效应

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We report a pronounced nonclassical polarization effect on the shape of fluorescence emission spectra from isolated microdroplets containing a dilute solution of soluble fluors or a dilute layer of surfactant fluors. We see different spectral shapes for 90 deg scattering when comparing between I_(VV), I_(VH), I_(HH), I_(HV). However, we measure the largest difference in spectral shape in the surfactant case, with the incident polarization directed toward the detector (I_(HV) VS I_(HH)). Imaging reveals that the emission in this case principally arises from two distinct regions near the surface of the droplet, which are diametrically opposed and along the axis of the incident laser beam. The effect appears to be the direct result of coupling between molecular emission moments and electromagnetic modes of the droplet. It is not the molecule which radiates but the molecule microvessel. Directional emission is sensitive to the polarization of the electromagnetic mode which is stimulated by the coupling.
机译:我们报告了一个明显的非经典偏振效应,其对来自包含可溶荧光素的稀溶液或表面活性剂荧光素的稀层的分离的微滴的荧光发射光谱的形状产生了影响。在I_(VV),I_(VH),I_(HH),I_(HV)之间进行比较时,我们看到90度散射的不同光谱形状。但是,在表面活性剂的情况下,我们测量了光谱形状的最大差异,入射偏振指向检测器(I_(HV)VS I_(HH))。成像显示,在这种情况下,发射主要来自液滴表面附近的两个截然不同的区域,这些区域在直径上相对并且沿着入射激光束的轴。该作用似乎是分子发射矩与液滴的电磁模式之间耦合的直接结果。辐射的不是分子,而是微血管。定向发射对耦合所激发的电磁模式的极化敏感。

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