Size distribution of particles in Saturn's rings from aggregation and fragmentation
arXiv:1302.4097 · doi:10.1073/pnas.1503957112
Abstract
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 inter-particle collisions. For particles in the size range from a few centimeters to a few meters, a power-law distribution of radii, with , 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 to be constrained to the interval . 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 micro-structures seen in Saturn's rings.
References in corpus (9)
- A ring system detected around the Centaur (10199) Chariklo
- Possible ring material around centaur (2060) Chiron
- Enskog Theory for Polydisperse Granular Mixtures II. Sonine Polynomial Approximation
- Predicting Photometric and Spectroscopic Signatures of Rings around Transiting Extrasolar Planets
- The population of propellers in Saturn's A Ring
- Shattering Transitions in Collision-Induced Fragmentation
- Photometric and spectroscopic evidence for a dense ring system around Centaur Chariklo
- Mass and period limits on the ringed companion transiting the young star J1407
- Universality of temperature distribution in granular gas mixtures with a steep particle size distribution
Cited by in corpus (59)
- Explosive Phenomena in Complex Networks
- Plato's cube and the natural geometry of fragmentation
- Pattern formation by turbulent cascades
- Oscillations in aggregation-shattering processes
- ALMA Discovery of Dust Belts Around Proxima Centauri
- Kinetics of Vapor-Solid Phase Transitions: Structure, growth and mechanism
- Universal framework for record ages under restart
- Modelling dust processing and the evolution of grain sizes in the ISM using the method of moments
- Dynamical collective memory in fluidized granular materials
- Early-stage aggregation in three-dimensional charged granular gas
- Stationary mass distribution and nonlocality in models of coalescence and shattering
- Effect of turbulence on collisional growth of cloud droplets
- Ballistic Aggregation in Systems of Inelastic Particles: Cluster growth, structure and aging
- Steady oscillations in aggregation-fragmentation processes
- Fragmentation with Discontinuous Galerkin schemes: Non-linear fragmentation
- A Framework for Characterizing Transmission Spectra of Exoplanets with Circumplanetary Rings
- Kinetic theory for dilute cohesive granular gases with a square well potential
- Phase Transitions in Systems with Aggregation and Shattering
- Direct simulation Monte Carlo for new regimes in aggregation-fragmentation kinetics
- Dimension Dependence of Clustering Dynamics in Models of Ballistic Aggregation and Freely Cooling Granular Gas
- Energy nonequipartition in a collisional model of a confined quasi-two-dimensional granular mixture
- Cronomoons: origin, dynamics, and light-curve features of ringed exomoons
- Electrification in granular gases leads to constrained fractal growth
- Anomalous aggregation regimes of temperature-dependent Smoluchowski equations
- Non-extensive super-cluster states in aggregation with fragmentation
- Kinetic regimes in aggregating systems with spontaneous and collisional fragmentation
- Universality properties of steady driven coagulation with collisional evaporation
- Granular Fluids with Solid Friction and Heating
- Size-polydisperse dust in molecular gas: Energy equipartition versus non-equipartition
- A Monte Carlo algorithm to measure probabilities of rare events in cluster-cluster aggregation
- A combined model of aggregation, fragmentation, and exchange processes: insights from analytical calculations
- Genuine Non-Self-Averaging and Ultra-Slow Convergence in Gelation
- Hopf bifurcation in addition-shattering kinetics
- Collision fragmentation of aggregates. The role of the interaction potential between comprising particles
- Diffusion in multicomponent granular mixtures
- Jamming and Tiling in Fragmentation of Rectangles
- The role of energy in ballistic agglomeration
- Supercluster states and phase transitions in aggregation-fragmentation processes
- Sharp gap edges in dense planetary rings: An axisymmetric diffusion model
- Nonnegative tensor train for the multicomponent Smoluchowski equation
- Collision of nanoparticles of covalently bound atoms. Impact of stress-dependent adhesion
- Hydrodynamic equations for space-inhomogeneous aggregating fluids with first-principle kinetic coefficients
- A formation mechanism for narrow rings around minor bodies
- Rheology of dilute granular gas mixtures where the grains interact via a square shoulder and well potential
- Origin of the spontaneous oscillations in a simplified coagulation-fragmentation system driven by a source
- Jamming and Tiling in Aggregation of Rectangles
- Exact solutions of temperature-dependent Smoluchowski equations
- Packing fraction of clusters formed in free-falling granular streams based on flash X-ray radiography
- Stability condition of the steady oscillations in aggregation models with shattering process and self-fragmentation
- Model reduction in Smoluchowski-type equations
- Gelation in input-driven aggregation
- Fragmentation instability in aggregating systems
- Frictional Cooling of Granular Gases: A Molecular Dynamics Study
- Hydrodynamics of granular gases of inelastic and rough hard disks or spheres. II. Stability analysis
- Control of fragment sizes of exploding rings
- Higher order mass aggregation terms in a nonlinear predator-prey model maintain limit cycle stability in Saturn's F ring
- Disruption of Saturn's ring particles by thermal stress
- Thermal hysteresis and front propagation in dense planetary rings
- Mean-squared displacements of rough particles in polydisperse granular gases