Conceptual study for velocity space resolved thermal ion loss detection in tokamaks

Author:

Poley-Sanjuán J.12ORCID,Galdón-Quiroga J.1ORCID,Viezzer E.1ORCID,Rueda-Rueda J.1ORCID,Cano-Megias P.3ORCID,Oyola P.1ORCID,Cruz-Zabala D. J.1ORCID,

Affiliation:

1. Department of Atomic, Molecular and Nuclear Physics, University of Seville, 41012 Seville, Spain

2. Ecole Polytechnique Fédérale de Lausanne (EPFL), Swiss Plasma Center (SPC), CH-1015 Lausanne, Switzerland

3. Department of Energy Engineering, University of Seville, 41012 Seville, Spain

Abstract

A new concept for velocity space thermal ion loss detection is presented. This diagnostic provides pitch angle resolved measurements that are unfeasible with current diagnostics. It uses the same detection principle as the Fast-Ion Loss Detector with a scintillator as the active component and includes a double slit configuration to measure simultaneously the escaping counter- and co-current ions. Simulations show a gyroradius range between 0.15 and 1.00 cm with a resolution below 0.15 cm (for a gyroradius of 1 cm) and a pitch angle range between 30° and 150° with a resolution below 8° for both counter- and co-current ions. The formation of a sheath in front of the detector and its associated electric field may impact the detection principle. Preliminary simulations with a homogeneous electric field show a decrease in the measurable velocity space range, whereas the gyroradius and pitch angle resolution barely change. The strike map is sensitive to the sheath electric field.

Funder

Banco Bilbao Vizcaya Argentaria

HORIZON EUROPE European Research Council

Spanish Ministry of Science and Innovation

Publisher

AIP Publishing

Subject

Instrumentation

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