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1.
Rev Sci Instrum ; 85(11): 11E412, 2014 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-25430319

RESUMO

Charge exchange spectroscopy has long been a key diagnostic tool for fusion plasmas and is well developed in devices with Carbon Plasma-Facing Components. Operation with the ITER-like wall at JET has resulted in changes to the spectrum in the region of the Carbon charge exchange line at 529.06 nm and demonstrates the need to revise the core charge exchange analysis for this line. An investigation has been made of this spectral region in different plasma conditions and the revised description of the spectral lines to be included in the analysis is presented.

2.
Rev Sci Instrum ; 81(10): 10E315, 2010 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-21061491

RESUMO

The ITER-oriented JET research program brings new requirements for the low-Z impurity monitoring, in particular for the Be­the future main wall component of JET and ITER. Monitoring based on Bragg spectroscopy requires an absolute sensitivity calibration, which is challenging for large tokamaks. This paper describes both "component-by-component" and "continua" calibration methods used for the Be IV channel (75.9 Å) of the Bragg rotor spectrometer deployed on JET. The calibration techniques presented here rely on multiorder reflectivity calculations and measurements of continuum radiation emitted from helium plasmas. These offer excellent conditions for the absolute photon flux calibration due to their low level of impurities. It was found that the component-by-component method gives results that are four times higher than those obtained by means of the continua method. A better understanding of this discrepancy requires further investigations.

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