All Stories

  1. Validation of ERMES 20.0 finite element code for JET A2 antennas coupling studies
  2. Validation of ERMES 20.0 finite element code for MAST Upgrade O-X mode conversion
  3. Computational Human Skin Model for 5G Electromagnetic Field Exposure Studies
  4. ERMES 20.0: Open-source finite element tool for computational electromagnetics in the frequency domain
  5. Remote infrared view of JET divertor compatible with D-T operations
  6. NextGEM: Next-Generation Integrated Sensing and Analytical System for Monitoring and Assessing Radiofrequency Electromagnetic Field Exposure and Health
  7. Remote wide angle view broad wavelength viewing system compatible with D-T operations in JET
  8. RF power as key contributor to high performance "baseline" scenario experiments in JET DD and DT plasmas in preparation for ITER
  9. ICRH operations and experiments during the JET-ILW tritium and DTE2 campaigns
  10. Enhanced performance in fusion plasmas through turbulence suppression by megaelectronvolt ions
  11. Disruption prediction with artificial intelligence techniques in tokamak plasmas
  12. Overview of JET results for optimising ITER operation
  13. Global scaling of the heat transport in fusion plasmas
  14. Recent improvements to the ICRF antenna coupling code “RAPLICASOL”
  15. Full wave simulation of RF waves in cold plasma with the stabilized open-source finite element tool ERMES
  16. Enabling validated exascale nuclear science
  17. Fault analysis and improved design of JET in-vessel Mirnov coils
  18. A power-balance model of the density limit in fusion plasmas: application to the L-mode tokamak
  19. Testing of a high temperature radiatively cooled Li/Ta heat pipe in Magnum-PSI
  20. Overview of the JET preparation for deuterium–tritium operation with the ITER like-wall
  21. RF sheath modeling of experimentally observed plasma surface interactions with the JET ITER-Like Antenna
  22. Analysis of deposited layers with deuterium and impurity elements on samples from the divertor of JET with ITER-like wall
  23. Determination of isotope ratio in the divertor of JET-ILW by high-resolution Hα spectroscopy: H–D experiment and implications for D–T experiment
  24. Analysis of the outer divertor hot spot activity in the protection video camera recordings at JET
  25. Improved neutron activation dosimetry for fusion
  26. Population modelling of the He II energy levels in tokamak plasmas: I. Collisional excitation model
  27. A locked mode indicator for disruption prediction on JET and ASDEX upgrade
  28. Impact of ICRF on the scrape-off layer and on plasma wall interactions: From present experiments to fusion reactor
  29. Runaway electron beam control
  30. Measuring fast ions in fusion plasmas with neutron diagnostics at JET
  31. Full-orbit and drift calculations of fusion product losses due to explosive fishbones on JET
  32. Plasma-wall interaction on the divertor tiles of JET ITER-like wall from the viewpoint of micro/nanoscopic observations
  33. Modelling of JET hybrid plasmas with emphasis on performance of combined ICRF and NBI heating
  34. An improved model for the accurate calculation of parallel heat fluxes at the JET bulk tungsten outer divertor
  35. Equilibrium reconstruction at JET using Stokes model for polarimetry
  36. Electron acceleration in a JET disruption simulation
  37. Review of recent experimental and modeling advances in the understanding of lower hybrid current drive in ITER-relevant regimes
  38. Observations and modelling of ion cyclotron emission observed in JET plasmas using a sub-harmonic arc detection system during ion cyclotron resonance heating
  39. Real-time-capable prediction of temperature and density profiles in a tokamak using RAPTOR and a first-principle-based transport model
  40. MHD spectroscopy of JET plasmas with pellets via Alfvén eigenmodes
  41. Scenario development for the observation of alpha-driven instabilities in JET DT plasmas
  42. TAE stability calculations compared to TAE antenna results in JET
  43. Inter-ELM evolution of the edge current density in JET-ILW type I ELMy H-mode plasmas
  44. W transport and accumulation control in the termination phase of JET H-mode discharges and implications for ITER
  45. Observation of enhanced ion particle transport in mixed H/D isotope plasmas on JET
  46. Analysis of possible improvement of the plasma performance in JET due to the inward spatial channelling of fast-ion energy
  47. Neutron spectroscopy measurements of 14 MeV neutrons at unprecedented energy resolution and implications for deuterium–tritium fusion plasma diagnostics
  48. ICRH antennaS-matrix measurements and plasma coupling characterisation at JET
  49. Modelling of JET DT experiments in ILW configurations
  50. High fusion performance at highTi/Tein JET-ILW baseline plasmas with high NBI heating power and low gas puffing
  51. Light impurity transport in JET ILW L-mode plasmas
  52. Evidence of9Be  +  pnuclear reactions during 2ωCHand hydrogen minority ICRH in JET-ILW hydrogen and deuterium plasmas
  53. Effects of nitrogen seeding on core ion thermal transport in JET ILW L-mode plasmas
  54. 14 MeV calibration of JET neutron detectors—phase 1: calibration and characterization of the neutron source
  55. Axisymmetric global Alfvén eigenmodes within the ellipticity-induced frequency gap in the Joint European Torus
  56. Integrated modelling of H-mode pedestal and confinement in JET-ILW
  57. Comparison of runaway electron generation parameters in small, medium-sized and large tokamaks—A survey of experiments in COMPASS, TCV, ASDEX-Upgrade and JET
  58. Analysis of ELM stability with extended MHD models in JET, JT-60U and future JT-60SA tokamak plasmas
  59. Efficient generation of energetic ions in multi-ion plasmas by radio-frequency heating
  60. Overview of the JET results in support to ITER
  61. Impact of the JET ITER-like wall on H-mode plasma fueling
  62. A finite element tool for the electromagnetic analysis of braided cable shields
  63. A frequency domain approach for computing the Lorentz force in electromagnetic metal forming
  64. ERMES: A nodal-based finite element code for electromagnetic simulations in frequency domain
  65. A numerical model for the search of the optimum frequency in electromagnetic metal forming
  66. COMPUTATIONAL PERFORMANCE OF A WEIGHTED REGULARIZED MAXWELL EQUATION FINITE ELEMENT FORMULATION
  67. SPECIFIC ABSORPTION RATE COMPUTATIONS WITH A NODAL-BASED FINITE ELEMENT FORMULATION
  68. Finite Element Model for the Computation of the Transfer Impedance of Cable Shields
  69. A Numerical Model for the Search of the Optimum Capacitance in Electromagnetic Metal Forming
  70. NUMERICAL STUDY OF THE THERMAL EFFECTS INDUCED BY A RFID ANTENNA IN VIALS OF BLOOD PLASMA
  71. Regularized Maxwell Equations and Nodal Finite Elements for Electromagnetic Field Computations
  72. Open tools for electromagnetic simulation programs
  73. EMANT: Integration of GiD and Kratos, Open and Flexible Computational Tools