The fast-ion phase-space distribution function in axisymmetric tokamak plasmas is completely described by the three constants of motion: energy, magnetic moment and toroidal canonical angular momentum. In this work, the observable regions of constants-of-motion phase-space, given a diagnostic setup, are identified and explained using projected velocities of the fast ions along the diagnostic lines-of-sight as a proxy for several fast-ion diagnostics, such as fast-ion D alpha spectroscopy, collective Thomson scattering, neutron emission spectroscopy and gamma-ray spectroscopy. The observable region in constants-of-motion space is given by a position condition and a velocity condition, and the diagnostic sensitivity is given by a gyro-orbit and a drift-orbit weighting. As a practical example, 3D orbit weight functions quantifying the diagnostic sensitivity to each point in phase-space are computed and investigated for the future COMPASS-Upgrade and MAST-Upgrade tokamaks.

Rud, M., Moseev, D., Jaulmes, F., Bogar, K., Eriksson, J., Järleblad, H., et al. (2024). Diagnostic weight functions in constants-of-motion phase-space. NUCLEAR FUSION, 64(3) [10.1088/1741-4326/ad1fac].

Diagnostic weight functions in constants-of-motion phase-space

Nocente, M;
2024

Abstract

The fast-ion phase-space distribution function in axisymmetric tokamak plasmas is completely described by the three constants of motion: energy, magnetic moment and toroidal canonical angular momentum. In this work, the observable regions of constants-of-motion phase-space, given a diagnostic setup, are identified and explained using projected velocities of the fast ions along the diagnostic lines-of-sight as a proxy for several fast-ion diagnostics, such as fast-ion D alpha spectroscopy, collective Thomson scattering, neutron emission spectroscopy and gamma-ray spectroscopy. The observable region in constants-of-motion space is given by a position condition and a velocity condition, and the diagnostic sensitivity is given by a gyro-orbit and a drift-orbit weighting. As a practical example, 3D orbit weight functions quantifying the diagnostic sensitivity to each point in phase-space are computed and investigated for the future COMPASS-Upgrade and MAST-Upgrade tokamaks.
Articolo in rivista - Articolo scientifico
constants-of-motion phase-space; diagnostics; fast ions; weight functions;
English
2024
64
3
036007
none
Rud, M., Moseev, D., Jaulmes, F., Bogar, K., Eriksson, J., Järleblad, H., et al. (2024). Diagnostic weight functions in constants-of-motion phase-space. NUCLEAR FUSION, 64(3) [10.1088/1741-4326/ad1fac].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/488999
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