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Spatiotemporal Evolution of Runaway Electron Momentum Distributions in Tokamaks.

作者信息

Paz-Soldan C, Cooper C M, Aleynikov P, Pace D C, Eidietis N W, Brennan D P, Granetz R S, Hollmann E M, Liu C, Lvovskiy A, Moyer R A, Shiraki D

机构信息

General Atomics, San Diego, California 92186, USA.

Oak Ridge Associated Universities, Oak Ridge, Tennessee 37831, USA.

出版信息

Phys Rev Lett. 2017 Jun 23;118(25):255002. doi: 10.1103/PhysRevLett.118.255002. Epub 2017 Jun 22.

DOI:10.1103/PhysRevLett.118.255002
PMID:28696735
Abstract

Novel spatial, temporal, and energetically resolved measurements of bremsstrahlung hard-x-ray (HXR) emission from runaway electron (RE) populations in tokamaks reveal nonmonotonic RE distribution functions whose properties depend on the interplay of electric field acceleration with collisional and synchrotron damping. Measurements are consistent with theoretical predictions of momentum-space attractors that accumulate runaway electrons. RE distribution functions are measured to shift to a higher energy when the synchrotron force is reduced by decreasing the toroidal magnetic field strength. Increasing the collisional damping by increasing the electron density (at a fixed magnetic and electric field) reduces the energy of the nonmonotonic feature and reduces the HXR growth rate at all energies. Higher-energy HXR growth rates extrapolate to zero at the expected threshold electric field for RE sustainment, while low-energy REs are anomalously lost. The compilation of HXR emission from different sight lines into the plasma yields energy and pitch-angle-resolved RE distributions and demonstrates increasing pitch-angle and radial gradients with energy.

摘要

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