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Bridging dielectric fluids by light: A ray optics approach

机译:通过光桥接介电流体:射线光学方法

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Rayleigh-Plateau instability is known to impose a stability limit for the length of a liquid bridge in weightless conditions. This fundamental limit may be exceeded by using a light field to form and stabilize dielectric fluid bridges (A. Casner, J.P. Delville, Europhys. Lett. 65, 337 (2004)). Using both new experimental data as well as a new theoretical approach, we show that both the size and the stability of such light-sustained dielectric bridge can be qualitatively explained. We present a ray optics model that encompasses the competition between surface tension effects and optical radiation pressure arising from total internal reflection inside the bridge. A critical power below which a liquid bridge can no longer be sustained by light is predicted and confirmed experimentally. The observed power dependence of the bridge diameter also agrees with the proposed stabilization mechanism.
机译:众所周知,瑞利高原不稳定性会在失重条件下对液桥的长度施加稳定性极限。通过使用光场来形成和稳定介电液桥可以超过该基本极限(A. Casner,J.P. Delville,Europhys。Lett。65,337(2004))。使用新的实验数据和新的理论方法,我们表明可以对这种光支撑介电桥的尺寸和稳定性进行定性解释。我们提出了一种射线光学模型,该模型涵盖了表面张力效应与桥梁内部全内反射产生的光学辐射压力之间的竞争。通过实验可以预测和确认一种临界功率,在该临界功率以下,液体桥不再能被光维持。所观察到的与桥直径的功率相关性也与所提出的稳定机制一致。

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