All Stories

  1. Characterization of a microwave reflectometer for edge density profile measurements at the ICRH antenna on Wendelstein 7-X
  2. Сombined Glow + Microwave Discharges in the TOMAS Plasma Facility
  3. Visions for fusion
  4. Combined electron cyclotron resonance and radio frequency discharges in the TOMAS facility
  5. Characterization of plasma parameters and neutral particles in microwave and radio frequency discharges in the Toroidal Magnetized System
  6. Characterization of ECRH plasmas in TOMAS
  7. The virtual drum circle: polyrhythmic music interactions in mixed reality
  8. Triple Langmuir probe calibration in TOMAS ECRH plasma
  9. The role of mechanical coupling in (spontaneous) interpersonal synchronisation
  10. Comparative analysis of the plasma parameters of ECR and combined ECR + RF discharges in the TOMAS plasma facility
  11. Design improvements, assembly and testing of the ICRH antenna for W7-X
  12. The upgraded TOMAS device: A toroidal plasma facility for wall conditioning, plasma production, and plasma–surface interaction studies
  13. Development of an experimental facility for the study of microparticle initiated radio frequency vacuum breakdown
  14. Experimental analysis of the particle transport in the magnetized plasma column with an application to the helicon discharge
  15. Effective collecting area of a cylindrical Langmuir probe in magnetized plasma
  16. Modelling of radio frequency sheath and fast wave coupling on the realistic ion cyclotron resonant antenna surroundings and the outer wall
  17. Efficient generation of energetic ions in multi-ion plasmas by radio-frequency heating
  18. Overview of the JET results in support to ITER
  19. Recent advances in physics and technology of ion cyclotron resonance heating in view of future fusion reactors
  20. SOL RF physics modelling in Europe, in support of ICRF experiments
  21. Synergetic heating of D-NBI ions in the vicinity of the mode conversion layer in H-D plasmas in JET with the ITER like wall.
  22. Recent progress on improving ICRF coupling and reducing RF-specific impurities in ASDEX Upgrade
  23. Feasibility study of Passive Optical Emission Spectroscopy for the electric field measurements in IShTAR
  24. Discharge initiation by ICRF antenna in IShTAR
  25. IShTAR ICRF antenna field characterization in vacuum and plasma by using probe diagnostic
  26. Recent H majority inverted radio frequency heating scheme experiments in JET-ILW
  27. Ion cyclotron wave coupling in the magnetized plasma edge of tokamaks: impact of a finite, inhomogeneous density inside the antenna box
  28. Parameter study of ICRH wave propagation in IShTAR
  29. Optimization of ICRH for core impurity control in JET-ILW
  30. A crude model to study radio frequency induced density modification close to launchers
  31. Impact of localized gas injection on ICRF coupling and SOL parameters in JET-ILW H-mode plasmas
  32. Isotope exchange by Ion Cyclotron Wall Conditioning on JET
  33. Localized Scrape-Off Layer density modifications by Ion Cyclotron near fields in JET and ASDEX-Upgrade L-mode plasmas
  34. Overview of the JET results
  35. Designing the IShTAR antenna: Physics and engineering aspects
  36. First experimental results on the IShTAR testbed
  37. ICRH for core impurity mitigation in JET-ILW
  38. N=2 ICRH of H majority plasmas in JET-ILW
  39. Studies of RF sheaths and diagnostics on IShTAR
  40. Wave coupling in the magnetized plasma edge: Impact of a finite, inhomogeneous density inside the antenna box
  41. Wave induced density modification in RF sheaths and close to wave launchers
  42. Impact of minority concentration on fundamental (H)D ICRF heating performance in JET-ILW
  43. 2D modeling of electromagnetic waves in cold plasmas
  44. Effect of the minority concentration on ion cyclotron resonance heating in presence of the ITER-like wall in JET
  45. Self-consistent application of ion cyclotron wall conditioning for co-deposited layer removal and recovery of tokamak operation on TEXTOR
  46. Overview of the JET results with the ITER-like wall
  47. Connection coefficients for cold plasma wave propagation near metallic surfaces
  48. Ion cyclotron resonance heating-induced density modification near antennas
  49. Self consistent radio-frequency wave propagation and peripheral direct current plasma biasing: Simplified three dimensional non-linear treatment in the “wide sheath” asymptotic regime
  50. Experimental investigation of ion cyclotron range of frequencies heating scenarios for ITER's half-field hydrogen phase performed in JET
  51. Minority and mode conversion heating in (3He)–H JET plasmas
  52. Observations of rotation in JET plasmas with electron heating by ion cyclotron resonance heating
  53. Predictive analysis ofq-profile influence on transport in JET and ASDEX Upgrade hybrid scenarios
  54. Optimizing ion-cyclotron resonance frequency heating for ITER: dedicated JET experiments
  55. Optimizing ion-cyclotron resonance frequency heating for ITER: dedicated JET experiments
  56. Comparison between dominant NB and dominant IC heated ELMy H-mode discharges in JET
  57. Overview of JET results
  58. Core transport properties in JT-60U and JET identity plasmas
  59. Comparison of Edge and Internal Transport Barriers in Drift Wave Predictive Simulations
  60. Enhancing The Mode Conversion Efficiency In JET Plasmas With Multiple Mode Conversion Layers
  61. Simulations of ICRF antenna near-fields in dielectric media and cold plasmas with COMSOL
  62. Influence of Magnetic Field Ripple on the Intrinsic Rotation of Tokamak Plasmas
  63. Observation of Confined Current Ribbon in JET Plasmas
  64. Experimental verification of sawtooth control by energetic particles in ion cyclotron resonance heated JET tokamak plasmas
  65. Role of Radial Electric Fields in Transport Barriers: Experimental Results
  66. Identity physics experiment on internal transport barriers in JT-60U and JET
  67. Pedestal width and ELM size identity studies in JET and DIII-D; implications for ITER
  68. Overview of JET results
  69. Internal transport barrier dynamics with plasma rotation in JET
  70. Fundamental ion cyclotron resonance heating of JET deuterium plasmas
  71. JET (3He)–D scenarios relying on RF heating: survey of selected recent experiments
  72. Radial electric field in JET advanced tokamak scenarios with toroidal field ripple
  73. H-mode access on JET and implications for ITER
  74. Hybrid H-mode scenario with nitrogen seeding and type III ELMs in JET
  75. Evolution of the radial electric field in a JET H-mode plasma
  76. Effect of toroidal field ripple on the formation of internal transport barriers
  77. Effect of toroidal field ripple on plasma rotation in JET
  78. Active control of type-I edge localized modes on JET
  79. Toroidal and poloidal momentum transport studies in tokamaks
  80. Toroidal and poloidal momentum transport studies in JET
  81. Active Control of Type-I Edge-Localized Modes withn=1Perturbation Fields in the JET Tokamak
  82. ICRH of JET and LHD Majority Ions at Their Fundamental Cyclotron Frequency
  83. Recent experimental results and modeling of RF heating of ([sup 3]He)-D JET plasmas: RF as a tool to study transport
  84. Improved charge exchange spectroscopy on the Joint European Torus for ion temperature and rotation velocity profiles
  85. Impurity-seeded ELMy H-modes in JET, with high density and reduced heat load
  86. Poloidal Rotation Dynamics, Radial Electric Field, and Neoclassical Theory in the Jet Internal-Transport-Barrier Region
  87. Preliminary study of the influence of DED on carbon radiation and transport in the TEXTOR tokamak
  88. Calibration of the charge exchange recombination spectroscopy diagnostic for core poloidal rotation velocity measurements on JET
  89. Overview of JET results