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Experimental investigation of free and bounded presheaths in weakly magnetized plasmas

Authors
Kang, In JeBae, Min-KeunLho, TaihyeopChung, Ki-Seok
Issue Date
Mar-2017
Publisher
The Korean Physical Society
Keywords
Presheath; Diffusion coefficient; Characteristic lengths of flux tube; DiPS; Linear plasma device
Citation
Current Applied Physics, v.17, no.3, pp 358 - 365
Pages
8
Indexed
SCI
SCIE
SCOPUS
KCI
Journal Title
Current Applied Physics
Volume
17
Number
3
Start Page
358
End Page
365
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/152757
DOI
10.1016/j.cap.2016.12.016
ISSN
1567-1739
1878-1675
Abstract
Transports of plasmas in the edge of fusion devices have similarities in terms of formation of a free presheath and unclear explanation on the transport process relating the diffusion coefficient (D-perpendicular to) to characteristic length of perturbing for flux tube (L-C). D-perpendicular to and L-C, are investigated by generating perturbations in various free presheaths due to a perturbing object located at the axial center of a linear plasma device, called DiPS (Divertor Plasma Simulator). Free presheaths are generated due to a tungsten perturbing object by changing the magnetic flux density. Bounded presheaths are also formed due to a limiting structure of a magnetic nozzle and due to the given geometry of DiPS. In terms of plasma discharge currents, radial plasma profiles were measured by using a fast scanning probe system. D-perpendicular to and Lc within the free presheath regions were calculated by using the measured plasma parameters and compared with those of bounded presheaths near the chamber walls. Decay length of plasma density was introduced to calculation of D-perpendicular to. To calculate the perturbation length (L) of free presheaths, a theoretical scale factor K was introduced as L = KLC using a fluid model. Normalized factor delta = D-perpendicular to/D-B, where D-B = Bohm diffusion coefficient, were obtained as 8 at free presheaths and 11 at bounded presheaths.
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