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Electrification of Sonoluminescing Single Bubble

机译:Sonoluminescing单泡的电气化

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摘要

The charge of microbubbles in water is considered to be negative at the liquid-bubble interface. We investigated, for the first time, the charge of a single bubble sonoluminescence (SBSL bubble) that exhibits spatiotemporally stable light emission. When negative DC voltage was applied, the SBSL bubble was attracted to a hot electrode. Conversely, the SBSL bubble was repelled by the hot electrode when positive DC voltage was applied. The translation of the SBSL bubble under an electric field suggests that it is positively charged, and the bubble moved to an equilibrium position to balance the primary Bjerknes force and the electrostatic force. The amount of bubble translation under an electric field depended on the elapsed time of sonoluminescence, suggesting that the products generated inside the SBSL bubble affect the mechanism of bubble charging. Furthermore, we measured the electric field effects on bubble expansion and contraction by a light scattering technique. Applying a positive voltage decreased the maximum bubble diameter and also the intensity of the SBSL. Conversely, applying a negative voltage increased the maximum bubble diameter and also the intensity of the SBSL. The present study revealed that a SBSL bubble is positively charged.
机译:在水中微泡的电荷被认为是液体 - 泡泡界面的负面。我们首次调查了一份泡沫辐射发光(SBSL泡沫),其表现出现时稳定的光发射。当施加负DC电压时,将SBSL气泡吸引到热电极。相反,当施加正DC电压时,热电极被热电电极泄露了SBSL气泡。在电场下的SBSL气泡的平移表明它是正电荷的,并且气泡移动到平衡位置以平衡主要Bjerknes力和静电力。电场下的气泡平移量取决于声发炎的经过时间,表明在SBSL气泡内产生的产品会影响气泡充电的机制。此外,我们通过光散射技术测量了对气泡膨胀和收缩的电场影响。施加正电压降低了最大气泡直径和SBSL的强度。相反,施加负电压增加了最大气泡直径以及SBSL的强度。本研究表明,SBSL气泡被带正电。

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