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Fractal fronts of diffusion in microgravity

机译:微重力扩散的分形前沿

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Spatial scale invariance represents a remarkable feature of natural phenomena. A ubiquitous example is represented by miscible liquid phases undergoing diffusion. Theory and simulations predict that in the absence of gravity diffusion is characterized by long-ranged algebraic correlations. Experimental evidence of scale invariance generated by diffusion has been limited, because on Earth the development of long-range correlations is suppressed by gravity. Here we report experimental results obtained in microgravity during the flight of the FOTON M3 satellite. We find that during a diffusion process a dilute polymer solution exhibits scale-invariant concentration fluctuations with sizes ranging up to millimetres, and relaxation times as large as 1,000 s. The scale invariance is limited only by the finite size of the sample, in agreement with recent theoretical predictions. The presence of such fluctuations could possibly impact the growth of materials in microgravity.. ? 2011 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:空间尺度不变性代表自然现象的显着特征。一个普遍存在的例子是经历扩散的可混溶液相。理论和模拟预测,在不存在重力的情况下,扩散的特征在于长期的代数相关性。由扩散产生的尺度不变性的实验证据是有限的,因为在地球上,远距离相关性的发展受到重力的抑制。在这里,我们报告在FOTON M3卫星飞行期间在微重力中获得的实验结果。我们发现,在扩散过程中,稀聚合物溶液显示出尺度不变的浓度波动,其大小范围可达毫米,并且弛豫时间高达1,000 s。与最新的理论预测一致,尺度不变性仅受样本的有限大小限制。这种波动的存在可能会影响微重力下材料的生长。 2011年自然出版集团(Macmillan Publishers Limited的子公司)。版权所有。

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