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Showing below up to 100 results in range #101 to #200.

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  1. TJ-II:Influence of electron / ion root and ion mass on the radial and frequency structure of zonal flows in TJ-II‏‎ (11:22, 27 March 2018)
  2. TJ-II:Blobs vs streamers‏‎ (11:23, 27 March 2018)
  3. TJ-II:Investigation of the ECRH power level and deposition radius on impurity confinement after injection by laser blow-off in TJ-II‏‎ (11:23, 27 March 2018)
  4. TJ-II:Infrared thermography of the NBI Beam Stop: NBI contribution to plasma fuelling‏‎ (11:24, 27 March 2018)
  5. TJ-II:Dependence of NBI-driven Alfvén Eigenmodes on NBI energy and power‏‎ (11:24, 27 March 2018)
  6. TJ-II:ECRH system calibration‏‎ (13:09, 27 March 2018)
  7. TJ-II:Evaluation of Neoclassical transport correction terms in TJ-II‏‎ (13:09, 27 March 2018)
  8. TJ-II:Investigation of plasma asymmetries in the TJ-II stellarator and comparison with Gyrokinetic simulations‏‎ (13:10, 27 March 2018)
  9. TJ-II:Potential asymmetries at low magnetic field‏‎ (13:10, 27 March 2018)
  10. TJ-II:Alfven Eigenmodes and biasing in TJ-II‏‎ (13:11, 27 March 2018)
  11. TJ-II:Fast Camera studies with triple bundle‏‎ (08:57, 3 April 2018)
  12. Edge Localized Modes‏‎ (10:52, 3 April 2018)
  13. TJ-II:Interferometry‏‎ (14:12, 3 April 2018)
  14. CUTIE‏‎ (15:26, 3 April 2018)
  15. Self-Organised Criticality‏‎ (15:32, 3 April 2018)
  16. Magnetic shear‏‎ (15:41, 3 April 2018)
  17. Wave ana‏‎ (15:43, 3 April 2018)
  18. Peeling-Ballooning Model‏‎ (15:45, 3 April 2018)
  19. MOCA‏‎ (15:49, 3 April 2018)
  20. Profile consistency‏‎ (15:55, 3 April 2018)
  21. Pedestal‏‎ (16:01, 3 April 2018)
  22. Gyrokinetic simulations‏‎ (16:07, 3 April 2018)
  23. TJ-II:Instabilities‏‎ (17:45, 3 April 2018)
  24. TJ-II:Soft X-rays‏‎ (17:59, 3 April 2018)
  25. TJ-II:Thomson Scattering‏‎ (18:05, 3 April 2018)
  26. TJ-II:Electron Cyclotron Emission‏‎ (18:07, 3 April 2018)
  27. TJ-II:Helium Beam‏‎ (18:11, 3 April 2018)
  28. TJ-II:Lithium Beam‏‎ (18:13, 3 April 2018)
  29. TJ-II:Spectroscopy‏‎ (18:20, 3 April 2018)
  30. TJ-II:Fast ion loss probe‏‎ (18:58, 3 April 2018)
  31. TJ-II:Diagnostic neutral beam‏‎ (19:02, 3 April 2018)
  32. TJ-II:Impurity transport‏‎ (19:04, 3 April 2018)
  33. TJ-II:Neutral Beam Injection‏‎ (19:07, 3 April 2018)
  34. TJ-II:Pellet injector‏‎ (19:10, 3 April 2018)
  35. TJ-II:Paddle‏‎ (19:13, 3 April 2018)
  36. TJ-I‏‎ (19:30, 3 April 2018)
  37. International Congress on Plasma Physics‏‎ (08:37, 4 April 2018)
  38. TJ-II:Plasma Wall Interaction‏‎ (20:05, 16 April 2018)
  39. TJ-II:Control and data acquisition systems‏‎ (11:36, 14 August 2018)
  40. TJ-II:Ports‏‎ (15:24, 11 September 2018)
  41. TJ-II:Influence of positive and negative density gradients in turbulent transport using the HIBP system‏‎ (10:30, 24 September 2018)
  42. Reconnection‏‎ (18:28, 28 September 2018)
  43. Sawtooth‏‎ (08:07, 29 September 2018)
  44. CFETR‏‎ (08:17, 1 October 2018)
  45. TJ-II:Turbulence spreading and ECRH modulation experiments in the TJ-II stellarator‏‎ (12:07, 8 October 2018)
  46. TJ-II:Vacuum system‏‎ (06:51, 13 October 2018)
  47. TJ-II:Construction‏‎ (07:02, 13 October 2018)
  48. TJ-II:Limiter‏‎ (07:16, 13 October 2018)
  49. TJ-II:Electron Bernstein Wave Heating‏‎ (07:28, 13 October 2018)
  50. TJ-II:Er and turbulence asymmetries in low ripple configurations measured by Doppler reflectometry‏‎ (18:15, 16 October 2018)
  51. TJ-II: Radiation asymmetries and potential variations‏‎ (15:51, 17 October 2018)
  52. TJ-II:Radiation asymmetries and potential variations‏‎ (15:51, 17 October 2018)
  53. TJ-II:Validation of ECCD predictions in TJ-II ECRH plasmas‏‎ (09:32, 19 October 2018)
  54. Software tools‏‎ (21:34, 18 November 2018)
  55. Ethics‏‎ (15:10, 24 January 2019)
  56. TJ-II:Observation of suprathermal ions with Neutral Particle Analyzers during electron cyclotron heating in the TJ-II stellarator‏‎ (11:26, 29 January 2019)
  57. TJ-II:Comparison of the ionic effective charge of TJ-II plasmas after recent vacuum wall boronization/lithiumization with Laser Blow-off contaminated plasmas using visible bremsstrahlung emissions‏‎ (14:49, 29 January 2019)
  58. TJ-II:Routine and systematic use of the LIBS‏‎ (14:57, 29 January 2019)
  59. TJ-II:Re-commissioning of Fast Ion Loss Detector‏‎ (15:06, 29 January 2019)
  60. TJ-II:In situ, real time boronization of TJ-II‏‎ (21:34, 19 February 2019)
  61. TJ-II:Influence of edge radial electric fields on particle and heat in the SOL‏‎ (21:34, 19 February 2019)
  62. TJ-II:Role of isotope mass on the radial width of Zonal Flows‏‎ (11:49, 26 February 2019)
  63. TJ-II:Poloidal 2D scans to investigate potential and density profiles in the TJ-II stellarator using dual Heavy ion beam probe diagnostic‏‎ (23:23, 26 February 2019)
  64. TJ-II:Searching for zonal fields and zonal flows driven by fast particles in TJ-II‏‎ (23:25, 26 February 2019)
  65. Stellarator optimization‏‎ (11:01, 7 May 2019)
  66. TJ-II:Retarding Field Analyzer‏‎ (15:18, 7 May 2019)
  67. Bicoherence‏‎ (13:10, 10 June 2019)
  68. LNF:Plasma Physics‏‎ (09:40, 25 July 2019)
  69. VMEC‏‎ (15:47, 7 August 2019)
  70. Effective plasma radius‏‎ (11:25, 6 October 2019)
  71. TJ-II:Large pellet injection into NBI-heated plasmas of tJ-II‏‎ (11:50, 7 October 2019)
  72. TJ-II: Investigation of Pellet Deposition Profiles and Transports in TJ-II using Integrated Predictive Modelling Codes‏‎ (13:47, 10 October 2019)
  73. TJ-II: Impurity injection with TESPEL in TJ-II stellarator‏‎ (14:27, 10 October 2019)
  74. TJ-II: Physics of transport decoupling, an approach to measure the phase relation between density and temperature fluctuations‏‎ (07:57, 11 October 2019)
  75. TJ-II: Feed back control of Zonal Flows and turbulence in TJ-II‏‎ (08:43, 11 October 2019)
  76. TJ-II: Electric potential and turbulence studies with HIBP and LP via edge biasing‏‎ (08:46, 11 October 2019)
  77. TJ-II: Searching for AEs suppression scenarios using off-axis ECCD‏‎ (18:31, 16 October 2019)
  78. TJ-II:Why fast particle electromagnetic induced stabilization in fusion plasmas?‏‎ (09:56, 18 October 2019)
  79. TJ-II: 2D mapping of plasma potential and density and their fluctuations in ECRH plasmas‏‎ (10:27, 18 October 2019)
  80. TJ-II:Turbulence driven magnetic islands‏‎ (17:35, 21 October 2019)
  81. TJ-II:Turbulence and radial electric field asymmetries in different iota magnetic configurations measured by Doppler reflectometry‏‎ (10:53, 24 October 2019)
  82. TJ-II:Real Time lithiatiation of TJII‏‎ (11:09, 30 October 2019)
  83. TJ-II: Studies of liquid metal insertion n TJ-II‏‎ (09:52, 1 November 2019)
  84. TJ-II:Plasma fueling experiments: influence of gas puffing distribution on plasma behaviour‏‎ (09:54, 1 November 2019)
  85. TJ-II:Infrared thermography of the NBI Beam Stop: NBI contribution to plasma fuelling (2)‏‎ (15:32, 4 November 2019)
  86. Coordinated Working Group Meeting‏‎ (11:09, 13 January 2020)
  87. TJ-II: Density limit and ZFs in TJ-II‏‎ (11:48, 20 January 2020)
  88. TJ-II: Comparison of Beam-wall effects at the beam ducts of NBI‏‎ (18:40, 20 January 2020)
  89. TJ-II:Real Time Lithiation-boronization in TJ-II‏‎ (17:11, 23 January 2020)
  90. TJ-II:LIA-TOF. New method for Edge Ti determination in TJ-II‏‎ (17:19, 23 January 2020)
  91. TJ-II: Why fast reaction of plasma fluctuations to ECRH ?‏‎ (09:46, 29 January 2020)
  92. Greenwald limit‏‎ (10:42, 9 July 2020)
  93. TJ-II:Langmuir Probes‏‎ (15:03, 9 February 2021)
  94. TJ-II:Transport analysis by means of the Transfer Entropy‏‎ (16:01, 16 February 2021)
  95. TJ-II:Influence of radial electric field on intermittence near rational surfaces‏‎ (10:31, 18 February 2021)
  96. TJ-II: Biasing experiments in TJ-II: Feed back control of Zonal Flows and cross-phase effects on turbulent transport‏‎ (10:35, 18 February 2021)
  97. TJ-II: Commissioning of new Gas Puff Imaging system‏‎ (10:35, 18 February 2021)
  98. TJ-II: Commissioning of the new helical arrays of magnetic coils‏‎ (10:35, 18 February 2021)
  99. TJ-II: Edge – SOL coupling studies using fast cameras and Langmuir probes: role of edge turbulence and radial electric fields‏‎ (10:36, 18 February 2021)
  100. TJ-II: Fast particles induced transport: ExB transport and asymmetries‏‎ (10:36, 18 February 2021)

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