Mechanism Behind the Recombination Requirement for Benign Termination of Relativistic Electron Beams
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arXiv
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| Format: | Preprint |
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2026
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| author | Su, George Zimmermann, Carl Friedrich Benedikt Paz-Soldan, Carlos Hoelzl, Matthias Aleynikov, Pavel |
| author_facet | Su, George Zimmermann, Carl Friedrich Benedikt Paz-Soldan, Carlos Hoelzl, Matthias Aleynikov, Pavel |
| contents | We present a first-principles explanation of the recombination requirement for benign termination of relativistic electron (RE) beams in tokamaks. Kinetic modeling including neutrals shows that the injection of neutrals over a finite quantity window, together with recombination, increases bulk resistivity. Nonlinear MHD simulations using the JOREK code demonstrate that this preferentially amplifies edge tearing modes, producing a more stochastic edge magnetic field during RE deconfinement, resulting in a larger RE wetted area. We identify resistivity, not the free electron density, to govern access to benign termination. This provides the first broadly applicable and experimentally consistent picture of the MHD mechanisms behind the benign scenario, critical to its extrapolation to next-step devices. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2604_15575 |
| institution | arXiv |
| publishDate | 2026 |
| record_format | arxiv |
| spellingShingle | Mechanism Behind the Recombination Requirement for Benign Termination of Relativistic Electron Beams Su, George Zimmermann, Carl Friedrich Benedikt Paz-Soldan, Carlos Hoelzl, Matthias Aleynikov, Pavel Plasma Physics We present a first-principles explanation of the recombination requirement for benign termination of relativistic electron (RE) beams in tokamaks. Kinetic modeling including neutrals shows that the injection of neutrals over a finite quantity window, together with recombination, increases bulk resistivity. Nonlinear MHD simulations using the JOREK code demonstrate that this preferentially amplifies edge tearing modes, producing a more stochastic edge magnetic field during RE deconfinement, resulting in a larger RE wetted area. We identify resistivity, not the free electron density, to govern access to benign termination. This provides the first broadly applicable and experimentally consistent picture of the MHD mechanisms behind the benign scenario, critical to its extrapolation to next-step devices. |
| title | Mechanism Behind the Recombination Requirement for Benign Termination of Relativistic Electron Beams |
| topic | Plasma Physics |
| url | https://arxiv.org/abs/2604.15575 |