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by Wolf, R.C and Ali, A and Alonso, A and Baldzuhn, J and Beidler, C and Beurskens, M and Biedermann, C and Bosch, H.-S and Bozhenkov, S and Brakel, R and Dinklage, A and Feng, Y and Fuchert, G and Geiger, J and Grulke, O and Helander, P and Hirsch, M and Höfel, U and Jakubowski, M and Knauer, J and Kocsis, G and König, R and Kornejew, P and Krämer-Flecken, A and Krychowiak, M and Landreman, M and Langenberg, A and Laqua, H.P and Lazerson, S and Maaßberg, H and Marsen, S and Marushchenko, M and Moseev, D and Niemann, H and Pablant, N and Pasch, E and Rahbarnia, K and Schlisio, G and Stange, T and Sunn Pedersen, T and Svensson, J and Szepesi, T and Trimino Mora, H and Turkin, Y and Wauters, T and Weir, G and Wenzel, U and Windisch, T and Wurden, G and Zhang, D and Abramovic, I and Äkäslompolo, S and Aleynikov, P and Aleynikova, K and Alzbutas, R and Anda, G and Andreeva, T and Ascasibar, E and Assmann, J and Baek, S.-G and Banduch, M and Barbui, T and Barlak, M and Baumann, K and Behr, W and Benndorf, A and Bertuch, O and Biel, W and Birus, D and Blackwell, B and Blanco, E and Blatzheim, M and Bluhm, T and Böckenhoff, D and Bolgert, P and Borchardt, M and Borsuk, V and Boscary, J and Böttger, L.-G and Brand, H and Brandt, Ch and Bräuer, T and Braune, H and Brezinsek, S and Brunner, K.-J and Brünner, B and Burhenn, R and Buttenschön, B and Bykov, V and Calvo, I and Cannas, B and Cappa, A and Carls, A and Carraro, L and Carvalho, B and Castejon, F and Charl, A and Chernyshev, F and Cianciosa, M and Citarella, R and ... and Oak Ridge National Lab. (ORNL), Oak Ridge, TN (United States) and Princeton Plasma Physics Lab. (PPPL), Princeton, NJ (United States) and Los Alamos National Lab. (LANL), Los Alamos, NM (United States)
Nuclear fusion, ISSN 1741-4326, 2017, Volume 57, Issue 10, p. 102020
After completing the main construction phase of Wendelstein 7-X (W7-X) and successfully commissioning the device, first plasma operation started at the end of... 
Condensed Matter Physics | magnetic confinement | Nuclear and High Energy Physics | plasma heating | stellarator | current drive | TRANSPORT | PHYSICS, FLUIDS & PLASMAS | CONFINEMENT | PHYSICS | Magnetic Fusion Energy | 70 PLASMA PHYSICS AND FUSION TECHNOLOGY
Journal Article
Computer physics communications, ISSN 0010-4655, 2014, Volume 185, Issue 4, pp. 1310 - 1321
A comprehensive description of methods, suitable for solving the kinetic equation for fast ions and impurity species in tokamak plasmas using a Monte Carlo... 
Orbit-following | Impurity tracing | Monte Carlo | Fast ions | LOAD ASYMMETRIES | TRANSPORT BARRIERS | PHYSICS, MATHEMATICAL | RADIAL ELECTRIC-FIELD | WAVES | COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS | JET | ABRUPT CHANGES | MONTE-CARLO-SIMULATION | L-H TRANSITION | DRIFT ORBIT WIDTH | RIPPLE-TRAPPED IONS | Physics - Plasma Physics
Journal Article
Fusion Engineering and Design, ISSN 0920-3796, 10/2015, Volume 98-99, pp. 1039 - 1043
[Display omitted] •Implemented a combined FEM Biot-Savart law method to calculate ITER magnetic fields.•Detailed ITER 3D magnetic fields, with ferromagnetic... 
Test Blanket Module | ITER | Ferritic insert | Magnetization | NUCLEAR SCIENCE & TECHNOLOGY | Magnetic fields | Ferromagnetism | Analysis | Finite element method | Simplification | Computer simulation | Mathematical analysis | Mathematical models | Vector potentials | Three dimensional | Fusion, Plasma and Space Physics | Fusion, plasma och rymdfysik
Journal Article
Fusion Science and Technology, ISSN 1536-1055, 05/2016, Volume 69, Issue 3, pp. 620 - 627
Measuring fast ions, most notably fusion alphas, in ITER and future reactors remains an issue that still lacks an adequate solution. Numerical simulations are... 
ASCOT | Fast ion diagnostics | Monte Carlo simulation | fast ion diagnostics | NUCLEAR SCIENCE & TECHNOLOGY | RIPPLE | Availability | Monte Carlo methods | Computer simulation | Analyzers | Diagnostic software | Mathematical models | Tokamaks | Activation analysis
Journal Article
Nuclear Fusion, ISSN 0029-5515, 2012, Volume 52, Issue 9, pp. 94014 - 7
The effect of ASDEX Upgrade (AUG) edge localized mode (ELM)-mitigation coils on fast ion wall loads was studied with the fast particle following Monte Carlo... 
PHYSICS, FLUIDS & PLASMAS | Coils | Beams (radiation) | Computer simulation | Elm | Perturbation | Magnetic fields | Plasma density | Walls
Journal Article
Nuclear fusion, ISSN 0029-5515, 2018, Volume 58, Issue 8, p. 082010
It is known that NBI ion losses may pose a problem to the Wendelstein 7-X first wall, but the so-far utilized wall models had insufficient details for... 
fast particle confinement | energetic particles | neutral beam injection | stellarator | EQUILIBRIA | PHYSICS, FLUIDS & PLASMAS | FIELD | CONFINEMENT
Journal Article
Journal of plasma physics, ISSN 0022-3778, 06/2015, Volume 81, Issue 3, pp. np - np
Journal Article
Nuclear Fusion, ISSN 0029-5515, 10/2016, Volume 56, Issue 11, p. 112024
We assess the effect of the European design of the pebble-bed helium-cooled test blanket modules (TBM) on fast ion power loads on ITER material surfaces. For... 
fusion energy | Monte Carlo method | power loads | ITER | energetic ions | PHYSICS, FLUIDS & PLASMAS | BEAMS | PHYSICS, NUCLEAR | MODEL | PLASMAS | Fusion, Plasma and Space Physics | Fusion, plasma och rymdfysik
Journal Article
Nature communications, ISSN 2041-1723, 11/2016, Volume 7, Issue 1, p. 13493
Journal Article
Physics of plasmas, ISSN 1089-7674, 2019, Volume 26, Issue 8, p. 082504
Wendelstein 7-X is the first comprehensively optimized stellarator aiming at good confinement with plasma parameters relevant to a future stellarator power... 
CONFINEMENT | ELEMENTS | DESIGN | W7-X | PHYSICS, FLUIDS & PLASMAS | ISLAND DIVERTOR | detachment | 70 PLASMA PHYSICS AND FUSION TECHNOLOGY | divertor | long-pulse | Wendelstein 7-X
Journal Article
by Klinger, T and Andreeva, T and Bozhenkov, S and Brandt, C and Burhenn, R and Buttenschön, B and Fuchert, G and Geiger, B and Grulke, O and Laqua, H.P and Pablant, N and Rahbarnia, K and Stange, T and von Stechow, A and Tamura, N and Thomsen, H and Turkin, Y and Wegner, T and Abramovic, I and Äkäslompolo, S and Alcuson, J and Aleynikov, P and Aleynikova, K and Ali, A and Alonso, A and Anda, G and Ascasibar, E and Bähner, J.P and Baek, S.G and Balden, M and Baldzuhn, J and Banduch, M and Barbui, T and Behr, W and Beidler, C and Benndorf, A and Biedermann, C and Biel, W and Blackwell, B and Blanco, E and Blatzheim, M and Ballinger, S and Bluhm, T and Böckenhoff, D and Böswirth, B and Böttger, L.-G and Borchardt, M and Borsuk, V and Boscary, J and Bosch, H.-S and Beurskens, M and Brakel, R and Brand, H and Bräuer, T and Braune, H and Brezinsek, S and Brunner, K.-J and Bussiahn, R and Bykov, V and Cai, J and Calvo, I and Cannas, B and Cappa, A and Carls, A and Carralero, D and Carraro, L and Carvalho, B and Castejon, F and Charl, A and Chaudhary, N and Chauvin, D and Chernyshev, F and Cianciosa, M and Citarella, R and Claps, G and Coenen, J and Cole, M and Cole, M.J and Cordella, F and Cseh, G and Czarnecka, A and Czerski, K and Czerwinski, M and Czymek, G and da Molin, A and da Silva, A and Damm, H and de la Pena, A and Degenkolbe, S and Dhard, C.P and Dibon, M and Dinklage, A and Dittmar, T and Drevlak, M and Drewelow, P and Drews, P and Durodie, F and Edlund, E and van Eeten, P and Effenberg, F and ... and Princeton Plasma Physics Lab. (PPPL), Princeton, NJ (United States)
Nuclear fusion, ISSN 1741-4326, 2019, Volume 59, Issue 11, p. 112004
The optimized superconducting stellarator device Wendelstein 7-X (with major radius R = 5.5 m, minor radius a = 0.5 m, and 30 m(3) plasma volume) restarted... 
SYSTEM | W7-X | PHYSICS, FLUIDS & PLASMAS | impurities | DENSITY LIMIT | plasma performance | turbulence | NBI heating | stellarator | CONFINEMENT | ECR heating | PHYSICS | divertor | 70 PLASMA PHYSICS AND FUSION TECHNOLOGY
Journal Article
JOURNAL OF INSTRUMENTATION, ISSN 1748-0221, 07/2019, Volume 14, Issue 7, pp. P07018 - P07018
Journal Article
Journal of Physics: Conference Series, ISSN 1742-6588, 11/2018, Volume 1125, Issue 1
Conference Proceeding
Journal of Instrumentation, ISSN 1748-0221, 10/2015, Volume 10, Issue 10, pp. P10012 - P10012
The activation probe is a robust tool to measure flux of fusion products from a magnetically confined plasma. A carefully chosen solid sample is exposed to the... 
Simulation methods and programs | Plasma diagnostics - charged-particle spectroscopy | Plasma diagnostics - probes | Nuclear instruments and methods for hot plasma diagnostics | INSTRUMENTS & INSTRUMENTATION
Journal Article