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Axisymmetric Eigenmodes Excited by Alpha Particle Energy Gradients in JET D-T Plasmas

H. J. C. OliverUnited Kingdom Atomic Energy AuthorityD. KingUnited Kingdom Atomic Energy AuthorityŽ. ŠtancarUnited Kingdom Atomic Energy AuthorityS. E. SharapovUnited Kingdom Atomic Energy AuthorityD. BanerjeeTurin Polytechnic UniversityT. BarberisPrinceton Plasma Physics LaboratoryR. CoelhoInstituto Superior Técnico, Universidade de LisboaI. CoffeyUnited Kingdom Atomic Energy AuthorityM. DrevalKharkiv Institute of Physics and TechnologyM. FitzgeraldUnited Kingdom Atomic Energy AuthorityL. FrassinettiKTH Royal Institute of TechnologyC. GiroudUnited Kingdom Atomic Energy AuthorityN. HawkesUnited Kingdom Atomic Energy AuthorityD. KeelingUnited Kingdom Atomic Energy AuthorityC. C. KimSLS2 ConsultingE. LercheF. PorcelliPolytechnic University of TurinG. SzepesiUnited Kingdom Atomic Energy AuthorityJET ContributorsEUROfusion Tokamak Exploitation Team
Physical Review Lettersjournal2025en
ABI

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Axisymmetric Alfvén eigenmodes have been observed at the plasma edge in deuterium-tritium (D-T) tokamak plasmas externally heated only by neutral beam injection in JET. The modes were detected only in D-T plasmas, not in pure D plasmas, indicating excitation by fusion-born α particles. The presence of the axisymmetric mode suggests that the modes were driven by positive energy gradients in the α particle distribution rather than radial gradients. The modes are driven by counter-current passing α particles with large orbit widths, allowing core-born α particles to interact with modes at the plasma edge. This reveals an excitation mechanism arising from positive energy gradients produced by the minimum energy required to confine particles at the edge, relevant to all burning plasmas.

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