Lagrangian coherent structures and plasma transport processes
arXiv:1507.07464 · doi:10.1017/S0022377815000690
Abstract
A dynamical system framework is used to describe transport processes in plasmas embedded in a magnetic field. For periodic systems with one degree of freedom the Poincaré map provides a splitting of the phase space into regions where particles have different kinds of motion: periodic, quasi-periodic or chaotic. The boundaries of these regions are transport barriers; i.e., a trajectory cannot cross such boundaries during the whole evolution of the system. Lagrangian Coherent Structure (LCS) generalize this method to systems with the most general time dependence, splitting the phase space into regions with different qualitative behaviours. This leads to the definition of finite-time transport barriers, i.e. trajectories cannot cross the barrier for a finite amount of time. This methodology can be used to identify fast recirculating regions in the dynamical system and to characterize the transport between them.
References in corpus (2)
Cited by in corpus (12)
- Supergranular turbulence in a quiet Sun: Lagrangian coherent structures
- Evolution, structure and topology of self-generated turbulent reconnection layers
- Coherent transport structures in magnetized plasmas, I : Theory
- Analysis of the nonlinear dynamics of a chirping-frequency Alfvén mode in a Tokamak equilibrium
- Fluctuations of Lyapunov Exponents in homogeneous and isotropic turbulence
- Shearless bifurcations in particle transport for reversed shear tokamaks
- Kinetic versus Magnetic Chaos in Toroidal Plasmas: A systematic quantitative comparison
- Role of the edge electric field in the resonant mode-particle interactions and the formation of transport barriers in toroidal plasmas
- Resonance overlap and non-linear features of the beam-plasma system
- Prediction of temperature barriers in weakly collisional plasmas by a Lagrangian Coherent Structures computational tool
- Analysis of non-diffusive avalanche transport of energetic particles
- Detecting Shearless Phase-Space Transport Barriers in Global Gyrokinetic Turbulence Simulations with Test Particle Map Models