Radiated power and soft x-ray diagnostics in the SMART tokamak

Author:

Salas-Suárez-Bárcena J.1ORCID,Delgado-Aparicio L. F.2ORCID,Segado-Fernández J.3,Rodríguez-González A.1ORCID,McKay K. A.1ORCID,Cruz-Zabala D. J.1ORCID,Hidalgo-Salaverri J.3ORCID,García-Domínguez J.2,García-Muñoz M.1ORCID,Viezzer E.1ORCID,Galdón-Quiroga J.1ORCID

Affiliation:

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

2. Princeton Plasma Physics Laboratory 2 , Princeton, New Jersey New Jersey 08543, USA

3. Department of Mechanical Engineering and Manufacturing, University of Seville 3 , Seville 41092, Spain

Abstract

A multi-energy soft x-ray diagnostic is planned to operate in the small aspect ratio tokamak (SMART), consisting of five cameras: one for core measurements, two for edge, and two for divertors. Each camera is equipped with four absolute extreme ultra-violet diodes, with three of them filtered by Ti and Al foils for C and O line emissions, respectively, and Be foils for temperature measurements. In addition, two spectrometers will be installed with a vertical line of sight for impurity control. This study introduces a synthetic model designed to characterize radiated power and soft x-ray emissions. The developed code extracts the radiated power and Zeff values by leveraging distributions of electron density, temperatures, and impurity concentrations. The investigation is centered on the predicted scenarios of SMART’s first phase of operation (Ip = 100 kA; Bt = 0.1 T), employing a double-null configuration with positive and negative triangularity. The anticipated impurities encompass C (1%) and Fe (0.01%) from the vessel, as well as O and N (0.1%) from air and water. For simplicity, the distribution is assumed to be homogeneous within the plasma, considering different mixtures with Zeff values ranging between 1 and 2. Finally, the model estimates signal strength for the diagnostic design, proving its feasibility.

Funder

HORIZON EUROPE European Research Council

Publisher

AIP Publishing

Reference18 articles.

1. Multi-energy soft-x-ray technique for impurity transport measurements in the fusion plasma edge

2. Multi-energy SXR cameras for magnetically confined fusion plasmas (invited)

3. L. Delgado-Aparicio , “Novel soft x-ray diagnostic techniques for the study of particle transport phenomena in magnetically confined fusion plasmas,” Ph.D. thesis (The Johns Hopkins University, 2008).

4. Compact “diode-based” multi-energy soft x-ray diagnostic for NSTX

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