An important step on the way to future fusion power plants was the 2021 deuterium-tritium experimental campaign (DTE2) at the Joint European Torus (JET), in which crucial DT physics was investigated. In this study, we have reconstructed the fast-ion deuterium distribution function in JET discharge 99971 which broke the former fusion energy record. It is the first time that the fast-ion distribution has been reconstructed from experimental data in a DT discharge. The reconstruction shows that the fast-ion deuterium distribution is anisotropic, with a bias towards co-going ions (p > 0). The fast-ion deuterium distribution likely peaks in energy (E) at around E ∼ 60-70 keV and has a marginal high-energy tail (E ≳ 180 keV). Furthermore, an orbit analysis shows that the fast-ion distribution is composed of mostly co-passing orbits (50%), trapped orbits (21%) and counter-passing orbits (27%), as well as a small population of potato orbits (1.7%) and counter-stagnation orbits (0.3%). The orbit-type constituents of the neutron measurements are distributed in similar fractions.

Jarleblad, H., Reman, B., Dong, Y., Nocente, M., Eriksson, J., Valentini, A., et al. (2025). Reconstruction of the fast-ion deuterium distribution in a tritium-rich plasma in the JET DTE2 campaign. NUCLEAR FUSION, 65(1) [10.1088/1741-4326/ad9b39].

Reconstruction of the fast-ion deuterium distribution in a tritium-rich plasma in the JET DTE2 campaign

Nocente M.;Dal Molin A.;Rigamonti D.;Tardocchi M.;
2025

Abstract

An important step on the way to future fusion power plants was the 2021 deuterium-tritium experimental campaign (DTE2) at the Joint European Torus (JET), in which crucial DT physics was investigated. In this study, we have reconstructed the fast-ion deuterium distribution function in JET discharge 99971 which broke the former fusion energy record. It is the first time that the fast-ion distribution has been reconstructed from experimental data in a DT discharge. The reconstruction shows that the fast-ion deuterium distribution is anisotropic, with a bias towards co-going ions (p > 0). The fast-ion deuterium distribution likely peaks in energy (E) at around E ∼ 60-70 keV and has a marginal high-energy tail (E ≳ 180 keV). Furthermore, an orbit analysis shows that the fast-ion distribution is composed of mostly co-passing orbits (50%), trapped orbits (21%) and counter-passing orbits (27%), as well as a small population of potato orbits (1.7%) and counter-stagnation orbits (0.3%). The orbit-type constituents of the neutron measurements are distributed in similar fractions.
Articolo in rivista - Articolo scientifico
DT; fast-ion distribution; JET; neutron diagnostics; slowing-down regularization; tomographic reconstruction; weight functions;
English
17-dic-2024
2025
65
1
016060
none
Jarleblad, H., Reman, B., Dong, Y., Nocente, M., Eriksson, J., Valentini, A., et al. (2025). Reconstruction of the fast-ion deuterium distribution in a tritium-rich plasma in the JET DTE2 campaign. NUCLEAR FUSION, 65(1) [10.1088/1741-4326/ad9b39].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/548162
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