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Picosecond sonoluminescence: An alternative electrohydrodynamic hypothesis

机译:PicoSecond SonoLminiseCence:替代的电流性能假设

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摘要

A mechanism is proposed for the sonoluminescence (SL) of single bubble in levitation in an acoustic field. The theoretical scenario is that during expansion and the major part of its collapse, a bubble is governed by Rayleigh-Plesset (RP) dynamics. Several ns before maximum collapse the bubble interface becomes unstable and /spl sim/10 to 20 needlelike jets are thought to invade the bubble symmetrically. Each of them releases a submicronic droplet. An intracavity spray is shed about 3 ns before the time of collapse. Because of the distortion of the electrical double layer surrounding the bubble, both jets and droplets are electrically (but oppositely) charged. The electrical field is so high that it is thought that electron emission occurs to such an extent that the jets are ablated and that a microplasma highly charged with energy is released within 50 ps (T/spl ges/30000 K; N/sub e/: 10/sup 26/ m/sup -3/). The mechanism proposed is showed to apply to the case of bubbles in non-aqueous solvents, too.
机译:提出了一种机制,用于在声场中的悬浮中的单泡升(SL)。理论场景是,在扩大和其崩溃的主要部分期间,泡沫由Rayleigh-Plesset(RP)动态控制。在最大崩溃之前,泡泡界面变得不稳定的几个NS和/ SPL SIM / 10到20个针状喷射被认为是对称的。每个人都释放潜在的液滴。在崩溃时,腔内喷雾约为3 ns。由于围绕气泡的电双层的变形,喷射器和液滴都是电(但相反)的充电。电场很高,认为射频被烧蚀的程度似乎被灭活,并且在> 50ps(t / spl ges / 30000k; n / sub e中,释放能量高度充电的微量电量。 /:10 / sup 26 / m / sup -3 /)。所提出的机制也被施加到非水溶剂中的气泡的情况。

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