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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Asymmetric optical radiation pressure effects on liquid interfaces under intense illumination
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Asymmetric optical radiation pressure effects on liquid interfaces under intense illumination

机译:强光照下非对称光学辐射压力对液体界面的影响

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Deformations of horizontal liquid interfaces by optical radiation pressure are generally expected to display similar behavior, whatever the direction of propagation of the exciting laser beam is. We found that this expectation is borne out as long as the cw laser illumination is moderate in strength. However, we found that, as a striking contrast for high field strengths, either a large stable tether can be formed or a breakup of the interface can occur, depending on whether the laser beam is directed upward or downward. Physically, the reason for this asymmetry can be traced to whether total reflection can occur. We present two simple theoretical models, one based on geometrical optics, the other on wave optics, that are able to illustrate the essence of the effect. In the case leading to interface disruption our experimental results are compared with those obtained by Zhang and Chang for water droplets illuminated by intense laser pulses [Opt. Lett. 13, 916 (1988)]. A key point in our experimental investigations is to work with a near-critical liquid-liquid interface. The surface tension therefore becomes significantly reduced, which thus enhances the magnitude of the stationary deformations induced. (C) 2003 Optical Society of America. [References: 26]
机译:不管激发激光束的传播方向如何,通常都希望通过光辐射压力使水平液体界面变形,以显示出相似的行为。我们发现只要连续激光照射强度适中,就可以实现这一期望。但是,我们发现,作为高场强的显着对比,取决于激光束是向上还是向下定向,可以形成较大的稳定系绳或发生界面破裂。从物理上讲,这种不对称的原因可以追溯到是否会发生全反射。我们提出了两个简单的理论模型,一个基于几何光学,另一个基于波光学,能够说明这种效应的本质。在导致界面破裂的情况下,将我们的实验结果与Zhang和Chang所获得的强激光脉冲照射的水滴的实验结果进行了比较[Opt。来吧13,916(1988)]。我们的实验研究的重点是使用接近临界的液-液界面。因此,表面张力变得显着降低,从而增加了所引起的静态变形的大小。 (C)2003年美国眼镜学会。 [参考:26]

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