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Size distribution of particles in Saturn’s rings from aggregation and fragmentation

机译:土星环中由于聚集和破碎而引起的颗粒尺寸分布

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摘要

Saturn’s rings consist of a huge number of water ice particles, with a tiny addition of rocky material. They form a flat disk, as the result of an interplay of angular momentum conservation and the steady loss of energy in dissipative interparticle collisions. For particles in the size range from a few centimeters to a few meters, a power-law distribution of radii,  ∼ r−q with q ≈ 3, has been inferred; for larger sizes, the distribution has a steep cutoff. It has been suggested that this size distribution may arise from a balance between aggregation and fragmentation of ring particles, yet neither the power-law dependence nor the upper size cutoff have been established on theoretical grounds. Here we propose a model for the particle size distribution that quantitatively explains the observations. In accordance with data, our model predicts the exponent q to be constrained to the interval 2.75 ≤ q ≤ 3.5. Also an exponential cutoff for larger particle sizes establishes naturally with the cutoff radius being set by the relative frequency of aggregating and disruptive collisions. This cutoff is much smaller than the typical scale of microstructures seen in Saturn’s rings.
机译:土星的环由大量的水冰颗粒和少量的岩石物质组成。由于角动量守恒和耗散的粒子间碰撞中能量的稳定损失的相互作用,它们形成了一个平盘。对于尺寸范围从几厘米到几米的粒子,可以推断出半径的幂律分布r r -q 且q≈3;对于较大的尺寸,分布具有陡峭的截止点。已经提出,这种尺寸分布可能是由于环颗粒的聚集和破碎之间的平衡而引起的,但是,从理论上讲,既没有建立幂律依赖性,也没有确定上限尺寸。在这里,我们提出了一种用于粒度分布的模型,该模型定量地解释了观察结果。根据数据,我们的模型预测指数q限制在2.75≤q≤3.5的区间内。同样,对于较大粒径的指数截止值自然会通过聚集和破坏性碰撞的相对频率设置截止值半径来确定。该临界值比土星环中常见的微观结构小得多。

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