Anisotropic Superattenuation of Capillary Waves on Driven Glass Interfaces

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Abstract

Metrological atomic force microscopy measurements are performed on the silica glass interfaces of photonic band-gap fibers and hollow capillaries. The freezing of attenuated out-of-equilibrium capillary waves during the drawing process is shown to result in a reduced surface roughness. The roughness attenuation with respect to the expected thermodynamical limit is determined to vary with the drawing stress following a power law. A striking anisotropic character of the height correlation is observed: glass surfaces thus retain a structural record of the direction of the flow to which the liquid was submitted.

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Bresson, B., Brun, C., Buet, X., Chen, Y., Ciccotti, M., Gâteau, J., … Vandembroucq, D. (2017). Anisotropic Superattenuation of Capillary Waves on Driven Glass Interfaces. Physical Review Letters, 119(23). https://doi.org/10.1103/PhysRevLett.119.235501

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