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Laser trapping and picosecond time-resolved spectroscopy of water droplets in air : cavity-enhanced spontaneous emission of Ru(bpy)3Cl2

机译:空气中水滴的激光捕获和皮秒时间分辨光谱:Ru(bpy)3Cl2的腔增强自发发射

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摘要

Whispering gallery mode (WGM) resonances were observed in the emission spectrum of Ru(bpy)3^[2+] (bpy = 2,2'-bipyridine) in a single laser-trapped water droplet levitated in air. The emission decay profiles of Ru(bpy)3^[2+] in the water droplets comprised fast and slow decay components. The emission lifetime of the slow decay component was independent of the diameter of the droplet, and corresponded to the value in a bulk aqueous solution. On the other hand, the emission lifetime of the fast decay component decreased with decreasing the droplet diameter, which could be ascribed to the cavity-enhanced spontaneous emission. The decrease in the emission lifetime of the fast decay component as a function of the droplet diameter was explained on the basis of cavity quantum electrodynamic (QED) effects. It was shown that the mode characteristic of WGM resonances and the enhancement factor of the radiative rate of Ru(bpy)3^[2+] were controlled by the size of the water droplet.
机译:在悬浮于空气中的单个激光捕获水滴中,Ru(bpy)3 ^ [2+](bpy = 2,2'-联吡啶)的发射光谱中观察到耳语画廊模式(WGM)共振。水滴中Ru(bpy)3 ^ [2+]的发射衰减曲线包括快衰减分量和慢衰减分量。慢衰变组分的发射寿命与液滴直径无关,并且对应于本体水溶液中的值。另一方面,随着液滴直径的减小,快速衰减分量的发射寿命降低,这可以归因于腔体增强的自发发射。根据腔量子电动力学(QED)效应,解释了快速衰减组分的发射寿命随液滴直径的变化而降低的情况。结果表明,WGM共振的模态特征和Ru(bpy)3 ^ [2+]的辐射速率的增强因子受水滴大小的控制。

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