August 2018

Journal

Identification of S VIII through S XIV emission lines between 17.5 and 50 nm in a magnetically confined plasma

By:
McCarthy, K. J.; Tamura, N.; Combs, Stephen K; Garcia, R.; Sanchez, J.; Navarro, M.; Panadero, N.; Pastor, I.; Team, TJ-II
Journal Name:
Physica Scripta
Page Number:
35601
Volume:
93
Issue Number:
3
Publication Date:
August 17, 2018
View DOI Listing:
https://doi.org/10.1088/1402-4896/aaa22c

Abstract

43 spectral emission lines from F-like to Li-like sulphur ions have been identified in the wavelength range from 17.5 to 50 nm in spectra obtained following tracer injection into plasmas created in a magnetically confined plasma device, the stellarator TJ-II. Plasmas created and maintained in this heliac device with electron cyclotron resonance heating achieve central electron temperatures and densities up to 1.5 keV and 8 × 1018 m−3, respectively. Tracer injections were performed with ≤6 × 1016 atoms of sulphur contained within ~300 μm diameter polystyrene capsules, termed tracer encapsulated solid pellets, using a gas propulsion system to achieve velocities between 250 and 450 m s−1. Once ablation of the exterior polystyrene shell by plasma particles is completed, the sulphur is deposited in the plasma core where it is ionized up to S+13 and transported about the plasma. In order to aid line identification, which is made using a number of atomic line emission databases, spectra are collected before and after injection using a 1 m focal length normal incidence spectrometer equipped with a CCD camera. This work is motivated by the need to clearly identify sulphur emission lines in the vacuum ultraviolet range of magnetically confined plasmas, as sulphur x-ray emission lines are regularly observed in both tokamak and stellarator plasmas.