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by Wolf, R C and Ali, A and Alonso, A Antia and Baldzuhn, J and Beidler, Craig and Beurskens, MNA Marc and Biedermann, C and Bosch, H S and Bozhenkov, S and Brakel, R and Dinklage, A and Feng, Yühe and Fuchert, G and Geiger, J and Grulke, O and Helander, P and Hirsch, M and Höfel, Udo and Jakubowski, M and Knauer, J and Kocsis, G and König, R and Kornejew, P and Kràmer-Flecken, A and Krychowiak, M and Laneman, Matt and Langenberg, A and Laqua, HP 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, TS and Svensson, J and Szepesi, T and Trimino Mora, H and Turkin, Y and Wauters, T and Weir, Gavin and Wenzel, U and Windisch, T and Wurden, Glen and Zhang, D and Abramovic, I Ivana and Äkàslompolo, S and Aleynikov, P and Aleynikova, K and Alzbutas, R and Anda, Gabor and Aneeva, T and Ascasibar, Enrique and Assmann, J and Baek, S G and Banduch, Martin and Barbui, T and Barlak, M and Baumann, K and Behr, W and Benndorf, Anee and Bertuch, O and Biel, W and Birus, Dietrich and Blackwell, B D and Blanco, Emilio and Blatzheim, Marko and Bluhm, Torsten and Böckenhoff, Daniel and Bolgert, Peter and Borchardt, Matthias and Borsuk, V and Boscary, J and Böttger, Lukas Georg and Brand, H and Brandt, Ch and Bràuer, T and Braune, H and Brezinsek, S and Brunner, K J and Brünner, B and Burhenn, R and Buttenschön, B and Bykov, Victor and Calvo, I and Cannas, B and Cappa, A and Carls, Ane and Carraro, LO and Carvalho, B and Castejon, Francisco 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 Nuclear Fusion Nuclear Fusion Nuclear Fusion Nuclear Fusion Nuclear Fusion Nuclear Fusion Nuclear Fusion Nuclear Fusion Nuclear Fusion Nuclear Fusion Nuclear Fusion Nuclear Fusion Nuclear Fusion Nuclear Fusion Nuclear Fusion Nuclear Fusion Nuclear Fusion, ISSN 0029-5515, 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... 
magnetic confinement | plasma heating | stellarator | current drive | TRANSPORT | PHYSICS, FLUIDS & PLASMAS | CONFINEMENT | PHYSICS | Magnetic Fusion Energy | 70 PLASMA PHYSICS AND FUSION TECHNOLOGY
Journal Article
by Pedersen, T Sunn and Otte, M and Lazerson, S and Helander, P and Bozhenkov, S and Biedermann, C and Klinger, T and Wolf, R C and Bosch, H S and Abramovic, I Ivana and Äkäslompolo, Simppa and Aleynikov, P and Aleynikova, K and Ali, A and Alonso, A Antia and Anda, Gabor and Aneeva, T and Ascasibar, Enrique and Baldzuhn, J and Banduch, Martin and Barbui, T and Beidler, Craig and Benndorf, Anee and Beurskens, MNA Marc and Biel, W and Birus, Dietrich and Blackwell, B D and Blanco, Emilio and Blatzheim, Marko and Bluhm, Torsten and Böckenhoff, Daniel and Bolgert, Peter and Borchardt, Matthias and Böttger, Lukas Georg and Brakel, R and Brandt, Ch and Bräuer, T and Braune, H and Burhenn, R and Buttenschön, B and Bykov, Victor and Calvo, I and Cappa, A and Carls, Ane and Carvalho, B and Castejon, Francisco and Cianciosa, M and Cole, Michael and Costea, Stefan and Cseh, G and Czarnecka, A and Da Molin, A and La Cal, De, Eduardo and La Pena, De, Angel and Degenkolbe, Sven and Dhard, Chana Prakash and Dinklage, A and Dostal, Marion and vlak, Michael and welow, Peter and ws, P and Dudek, Anzej and Durodie, Frederic and Dzikowicka, A and Eeten, Paul Von and Effenberg, F and Endler, M and Erckmann, V and Estrada, T and Fahrenkamp, Nils and Fellinger, JEJ and Feng, Yühe and Figacz, Waldemar and Ford, O and Fornal, T and Frerichs, H and Fuchert, G and Garcia-Munoz, Manuel and Geiger, B and Geiger, J and Gierse, Niels and Gogoleva, Alena and Gonçalves, B and Gradic, Dorothea and Grahl, Michael and Groß, Silvia and Grote, Heinz and Grulke, O and Guerard, Carlos and Haas, Matthias and Harris, Jeffrey and Hartfuß, H J and Hartmann, Dirk A and Hathiramani, D and Hein, Bernd and Heirnich, Stefan and Henneberg, Sophia and Hennig, Christine and Hernandez, Julio and Hidalgo, Carlos and ... and Wendelstein 7-X Team and The Wendelstein 7-X Team and Princeton Plasma Physics Lab. (PPPL), Princeton, NJ (United States) and Los Alamos National Lab. (LANL), Los Alamos, NM (United States)
Nature Communications Nature Communications Nature Communications Nature Communications Nature Communications Nature Communications Nature Communications Nature Communications Nature Communications Nature Communications Nature Communications Nature Communications, ISSN 2041-1723, 2016, Volume 7, Issue 1, p. 13493
Fusion energy research has in the past 40 years focused primarily on the tokamak concept, but recent advances in plasma theory and computational power have led... 
STELLARATOR | MULTIDISCIPLINARY SCIENCES | SURFACES | TORSATRON | 70 PLASMA PHYSICS AND FUSION TECHNOLOGY | surfaces | nuclear fusion and fission | stellarator | torsatron | Magnetic Fusion Energy | magnetically confined plasmas
Journal Article
Fusion Engineering and Design, ISSN 0920-3796, 10/2018, Volume 135, p. 95
Plasma-wall interaction (PWI) is a crucial issue for high-performance operation and first wall lifetime of future fusion reactors. An in situ measurement and... 
In situ measurement | Plasma | Spectroscopy | Fusion reactors | Tokamak devices | Laser ablation | Discharge | Nuclear fusion | Nuclear fuels | Lasers | Spectrum analysis | Diagnostic systems | Nuclear reactors | Codeposition | Fusion
Journal Article
Nuclear Inst. and Methods in Physics Research, B, ISSN 0168-583X, 03/2018, Volume 418, pp. 54 - 59
In this study, the ablation mass features related to reflectivity of bulk Molybdenum (Mo) were investigated by a Ti: Sa 6 fs laser pulse at central wavelength... 
Surface reflectivity | Ablation threshold | Ultrafast lasers ablation | Mass removal | REFLECTIVITY | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | OPTICAL-PROPERTIES | PHYSICS, NUCLEAR | DEPENDENCE | TRANSPORT | INSTRUMENTS & INSTRUMENTATION | METALS | NUCLEAR SCIENCE & TECHNOLOGY | PICOSECOND | ABSORPTION
Journal Article
Journal of Nuclear Materials, ISSN 0022-3115, 12/2014, Volume 455, Issue 1-3, pp. 180 - 184
The analysis of the deposition of eroded wall material on the plasma-facing materials in fusion devices is one of the crucial issues to maintain the plasma... 
INDUCED BREAKDOWN SPECTROSCOPY | NUCLEAR SCIENCE & TECHNOLOGY | MATERIALS SCIENCE, MULTIDISCIPLINARY | DIAGNOSTICS | Lasers | Analysis | Plasma physics | Concentration (composition) | Thresholds | Materials selection | Density | Ablation | Deposition | Quantitative analysis
Journal Article
Fusion Engineering and Design, ISSN 0920-3796, 09/2012, Volume 87, Issue 9, pp. 1700 - 1707
► Boron deposition profiles measured on Alcator C-Mod during boronization. ► Boron deposition profile is consistent with ionic deposition. ► Monte Carlo... 
Alcator C-Mod | Boronization | Monte Carlo simulation | Quartz microbalance | DISCHARGE | PLASMA-FACING COMPONENTS | OPERATION | NUCLEAR SCIENCE & TECHNOLOGY | DEPOSITION | Monte Carlo method | Plasma physics | Particle accelerators | Boron | Radio frequencies | Computer simulation | Microbalances | Tokamak devices | Orientation | Density | Deposition
Journal Article
Fusion Engineering and Design, ISSN 0920-3796, 10/2018, Volume 135, pp. 95 - 101
Plasma-wall interaction (PWI) is a crucial issue for high-performance operation and first wall lifetime of future fusion reactors. An measurement and the... 
Fuel retention | Laser-induced ablation spectroscopy | Plasma-wall interaction | Impurity deposition | COMPONENTS | NUCLEAR SCIENCE & TECHNOLOGY | Plasma physics | Superconductors | Ablation (Surgery) | Nuclear reactors | Spectrum analysis
Journal Article
Physica Scripta, ISSN 0281-1847, 12/2017, Volume 2017, Issue 170, p. 14004
Laser-induced breakdown spectroscopy (LIBS) is a well-established elemental composition analysis method as well as one of the most promising candidates for in... 
laser-induced breakdown spectroscopy | deposition | erosion | fuel retention | plasma wall interaction | PHYSICS, MULTIDISCIPLINARY
Conference Proceeding
Journal of Molecular Structure, ISSN 0022-2860, 2006, Volume 795, Issue 1, pp. 256 - 262
We present the first gas phase spectra of singly deuterated oxadisulfane, HSOD, in its vibrational ground state. More than 100 transitions have been recorded... 
HSOD | Terahertz spectroscopy | Molecular structure | oxadisulfane | HSOH | terahertz spectroscopy | HSSH | SULFUR-CONTAINING MOLECULES | DSOD | ROTATIONAL-TORSIONAL SPECTRUM | PERFORMANCE | CHEMISTRY, PHYSICAL | molecular structure | 2ND DERIVATIVES | ATOMS | HYDROGEN THIOPEROXIDE | BASIS-SETS | PYROLYSIS
Journal Article
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