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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Mie scattering from a sonoluminescing bubble with high spatial and temporal resolution
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Mie scattering from a sonoluminescing bubble with high spatial and temporal resolution

机译:从具有高时空分辨率的声致发光气泡的Mie散射

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The dynamics of a single-air bubble trapped in a resonant sound field in water has been characterized by Mie scattering and a Streak camera with high spatial and temporal resolution. The streak images show that in the endphase of the cavitation collapse the scattered light intensity is no function of the bubble radius anymore. In the last nanoseconds around minimum bubble radius most of the light is scattered at the highly compressed water surrounding the bubble and not at the bubble wall. This leads to a minimum in the scattered light intensity about 700 ps before the sonoluminescence pulse is emitted. And neglecting this changes leads to a strong overestimation of the bubble-wall velocity. In the reexpansion phase the high spatial resolution of the streak camera allows one to distinguish between the light scattered at the bubble wall and the light scattered at the outgoing shock wave. [References: 18]
机译:通过Mie散射和具有高时空分辨率的Streak摄像机,可以对陷于水中共振声场中的单个气泡的动力学特性进行表征。条纹图像显示,在空化崩溃的最后阶段,散射光强度不再是气泡半径的函数。在最小气泡半径附近的最后一纳秒内,大部分光线散射在气泡周围的高度压缩水处,而不是气泡壁处。这导致在发出声致发光脉冲之前,散射光强度达到最小约700 ps。忽略这种变化会导致对气泡壁速度的过高估计。在扩展阶段,条纹相机的高空间分辨率使人们可以区分在气泡壁处散射的光和在向外的冲击波处散射的光。 [参考:18]

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