Theoretical interpretation of W soft X-ray spectra collected by the pulse height analysis system on Wendelstein 7-X stellarator

被引:1
|
作者
Syrocki, L. [1 ]
Kubkowska, M. [1 ]
Jablonski, S. [1 ]
Neuner, U. [2 ]
机构
[1] Inst Plasma Phys & Laser Microfus, Hery 23, PL-01497 Warsaw, Poland
[2] Max Planck Inst Plasma Phys, Greifswald, Germany
关键词
D O I
10.1063/5.0210977
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
In many fusion devices, such as tokamaks or stellarators like Wendelstein 7-X (W7-X), soft x-ray pulse height analysis (PHA) system diagnostics are routinely used during the experiments. The PHA system is dedicated to providing information about the impurity content, and average along line-of-sight electron temperature in the plasma conditions. Moreover, it is also able to estimate impurity density and an average effective charge from the comparison of experimental spectra with the modeled ones. However, the experimental x-ray spectra can be interpreted in terms of interesting plasma parameters only when the theoretical radiation models first identify and then take into account all the relevant factors that affect the spectrum. Therefore, for this purpose, a theoretical model has been applied. Flexible Atomic Code, which allows for calculation of various atomic properties such as energy levels, cross sections for excitation and ionization by electron impact, transition probabilities for radiative transitions and autoionization, and any others as needed in the collisional-radiative approximation. The chosen spectra collected during the W7-X campaign (OP1.2b) were examined, trying to obtain an agreement between the observed and simulated spectra. The analysis carried out allowed for a reliable interpretation of experimental x-ray spectra, estimation of the electron temperature, and obtaining information on the content of tungsten impurities.
引用
收藏
页数:8
相关论文
共 50 条
  • [21] A divertor scraper observation system for the Wendelstein 7-X stellarator
    Wurden, G. A.
    Fellinger, J.
    Biedermann, C.
    Drewelow, P.
    Ford, O.
    Gamradt, M.
    Greve, H.
    Herold, F.
    Jakubowski, M.
    Jenzsch, H.
    Niemann, H.
    Sitjes, A. Puig
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2018, 89 (10):
  • [22] Structural evaluation of the busbar system of Wendelstein 7-X stellarator
    Giesen, B.
    Panin, A.
    Boguszewski, T.
    Brons, S.
    Charl, A.
    Czymek, G.
    John, A.
    Neubauer, O.
    Sauer, M.
    Schick, R.
    Szagowska, J.
    Wolters, J.
    FUSION ENGINEERING AND DESIGN, 2007, 82 (5-14) : 1591 - 1598
  • [23] Gyrokinetic analysis of linear microinstabilities for the stellarator Wendelstein 7-X
    Xanthopoulos, P.
    Jenko, F.
    PHYSICS OF PLASMAS, 2007, 14 (04)
  • [24] Concept for the calibration of the Rogowski coil system of the Wendelstein 7-X stellarator
    Neuner, Ulrich
    Rahbarnia, Kian
    Endler, Michael
    von Sehren, Christoph
    Thomsen, Henning
    Klinger, Thomas
    FUSION ENGINEERING AND DESIGN, 2017, 123 : 923 - 926
  • [25] THE SUPERCONDUCTING COIL SYSTEM OF THE ADVANCED MODULAR STELLARATOR WENDELSTEIN 7-X
    MAURER, W
    FUSION TECHNOLOGY, 1994, 26 (03): : 445 - 452
  • [26] Realization of a gas puff imaging system on the Wendelstein 7-X stellarator
    Terry, J. L.
    von Stechow, A.
    Baek, S. G.
    Ballinger, S. B.
    Grulke, O.
    von Sehren, C.
    Laube, R.
    Killer, C.
    Scharmer, F.
    Brunner, K. J.
    Knauer, J.
    Bois, S.
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2024, 95 (09):
  • [27] Determination of poloidal mode numbers of MHD modes and their radial location using a soft x-ray camera array in the Wendelstein 7-X stellarator
    Dreval, M. B.
    Brandt, C.
    Schilling, J.
    Thomsen, H.
    Beletskii, A.
    Koenies, A.
    PLASMA PHYSICS AND CONTROLLED FUSION, 2021, 63 (06)
  • [28] Prospects of X-ray imaging spectrometers for impurity transport: Recent results from the stellarator Wendelstein 7-X (invited)
    Langenberg, A.
    Pablant, N. A.
    Wegner, Th
    Traverso, P.
    Marchuk, O.
    Braeuer, T.
    Geiger, B.
    Fuchert, G.
    Bozhenkov, S.
    Pasch, E.
    Grulke, O.
    Kunkel, F.
    Killer, C.
    Nicolai, D.
    Satheeswaran, G.
    Hollfeld, K. P.
    Schweer, B.
    Krings, T.
    Drews, P.
    Offermanns, G.
    Pavone, A.
    Svensson, J.
    Alonso, J. A.
    Burhenn, R.
    Wolf, R. C.
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2018, 89 (10):
  • [29] Physics design, construction and commissioning of the ICRH system for the stellarator Wendelstein 7-X
    Ongena, J.
    Castano-Bardawil, D.
    Crombe, K.
    Kazakov, Y. O.
    Schweer, B.
    Stepanov, I.
    Van Schoor, M.
    Vervier, M.
    Kramer-Flecken, A.
    Neubauer, O.
    Nicolai, D.
    Satheeswaran, G.
    Offermanns, G.
    Hollfeld, K. P.
    Benndorf, A.
    Dinklage, A.
    Hartmann, D.
    Kallmeyer, J. P.
    Wolf, R. C.
    FUSION ENGINEERING AND DESIGN, 2023, 192
  • [30] Design aspects of the joints for the bus bar system of the Wendelstein 7-X stellarator
    Czymek, G.
    Giesen, B.
    Harberts, R.
    Panin, A.
    Lennartz, M.
    Reisgen, U.
    Schuster, W.
    Wolters, J.
    Rummel, K.
    Czerwinski, M.
    Lentz, H.
    Ebner, M.
    FUSION ENGINEERING AND DESIGN, 2007, 82 (5-14) : 1467 - 1472