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Detlev Reiter

Researcher at Forschungszentrum Jülich

Publications -  271
Citations -  8828

Detlev Reiter is an academic researcher from Forschungszentrum Jülich. The author has contributed to research in topics: Divertor & Plasma. The author has an hindex of 41, co-authored 268 publications receiving 8008 citations. Previous affiliations of Detlev Reiter include New York University & Saint Petersburg State Polytechnic University.

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Divertor transport study in the Large Helical Device

TL;DR: In this paper, the authors investigated the transport properties of the edge region in LHD and clarified the divertor/SOL function of the heliotron type device and found that the momentum loss due to the friction of counter-flows induced by the ergodic field lines breaks the pressure conservation along flux tubes.
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Hydrogen release from plasma-facing components into fusion plasmas - recent results from a spectroscopic approach

TL;DR: In this paper, it was shown that corrections to the estimated hydrogen flux may be required -a procedure is proposed in order to obtain values for an effective S/XB coefficient for atomic hydrogen (≠15), which denotes the ratio of the collisional ionization (S) to the excitation (X) rate coefficients, divided by the branching ratio B.
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Role of molecular effects in divertor plasma recombination

TL;DR: The operational parameters of the divertor plasmas are insensitive to the presence of MAR, although the latter may be important for correct interpretation of the Divertor diagnostics.
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Towards radiation transport modelling in divertors with the EIRENE code

TL;DR: In this article, an existing kinetic neutral particle code was adapted to divertor applications and applied to study Lyman opacity effects on population kinetics and hydrogen divertor radiation losses in a plasma environment.
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2D modelling of the ASDEX-Upgrade scrape-off layer and divertor plasma

TL;DR: In this paper, the B2-EIRENE code package is used to simulate the ASDEX-Upgrade scrape-off layer plasma and the neutral gas dynamics in a fully selfconsistent way.