The role of magnetic flux and wall current drain on anomalous diffusion
Mario J. Pinheiro
Abstract
A theoretical analysis of the anomalous diffusion transport mechanism suggests a possible connection between wall current drain and magnetic flux through the orbital trajectories of charged particles in a plasma submitted to a strong magnetic field. Then Bohm diffusion coefficient is straightforwardly obtained.
Create a lesson
Related papers
Towards Large-Scale Heterogeneous Data Organization for Scientific Foundation Models: A Nuclear Fusion Case Study
Nathaniel Chen, Kouroche Bouchiat, Peter Steiner et al.
Generation of Isolated Collimated Polarized γ-ray Beams via Spatiotemporal Optical Vortex Modulation
Xinyu Xie, Fengyu Sun, Huai-Hang Song et al.
Unified Gas-Kinetic Wave-Particle Method for Multiscale Simulation of Vlasov-Poisson-Fokker-Planck System
Zhigang Pu, Chang Liu, Yixiao Wang et al.
Enhanced Extreme Ultraviolet Emission from Laser-heated Blow-Off Tin Plasmas
Mathew P. Polek, Towfiq Ahmed, Kiran Linsuain et al.
ELMO: An Uncertainty-Aware Simulation-to-Surrogate Workflow for Fast Pedestal Linear-Stability Prediction
Nami Li, X. Q. Xu, T. Osborne et al.
Real-time virtual circuits for plasma shape control via neural network emulators: experimental demonstration on MAST Upgrade
Nicola C. Amorisco, Kamran Pentland, Adriano Agnello et al.