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Showing below up to 50 results in range #101 to #150.
- TJ-II:Understanding an often observed transient rise in core electron temperature during pellet injection into TJ-II plasmas
- TJ-II:Validation of ECCD predictions in TJ-II ECRH plasmas
- TJ-II:Validation of bootstrap predictions
- TJ-II:Why fast particle electromagnetic induced stabilization in fusion plasmas?
- TJ-II: 2D mapping of plasma parameters using HIBP
- TJ-II: 2D mapping of plasma potential and density and their fluctuations in ECRH plasmas
- TJ-II: Biasing experiments in TJ-II: Feed back control of Zonal Flows and cross-phase effects on turbulent transport
- TJ-II: Calibration of the helical arrays of Mirnov coils
- TJ-II: Combining retarding-field energy analyzer and electrostatic probes measurements, an approach to measure the phase relation between density and temperature fluctuations using RFA?
- TJ-II: Commissioning of new Gas Puff Imaging system
- TJ-II: Commissioning of the new helical arrays of magnetic coils
- TJ-II: Comparison of Beam-wall effects at the beam ducts of NBI
- TJ-II: Density limit and ZFs in TJ-II
- TJ-II: Edge – SOL coupling studies using fast cameras and Langmuir probes: role of edge turbulence and radial electric fields
- TJ-II: Electric potential and turbulence studies with HIBP and LP via edge biasing
- TJ-II: Evolution of LCR by HIBP and Probes
- TJ-II: Fast particles induced transport: ExB transport and asymmetries
- TJ-II: Feed back control of Zonal Flows and turbulence in TJ-II
- TJ-II: Filter spectroscopy for pellet ablation cloud in TJ-II NBI plasmas
- TJ-II: Impurity injection by laser blow-off (LBO): Confinement and transport studies of high Z impurity injection by LBO in ion-root regime discharges
- TJ-II: Impurity injection by laser blow-off (LBO): Confinement and transport studies of high Z impurity injection by LBO in ion-root scenarios (II). Comparison to neoclassical and turbulence simulations.
- TJ-II: Impurity injection with TESPEL in TJ-II stellarator
- TJ-II: Influence of Alfven Eigenmodes in edge turbulence and Zonal Flows
- TJ-II: Influence of edge radial electric fields on impurity transport
- TJ-II: Influence of magnetic configuration on filament dynamics
- TJ-II: Infuence of AEs on ExB transport: role of phase shift effects
- TJ-II: Injection of TESPELs with compounds or multiple elements of interest for W7-X
- TJ-II: Investigation of Pellet Deposition Profiles and Transports in TJ-II using Integrated Predictive Modelling Codes
- TJ-II: Magnetic fluctuations induced by pellet injections in TJ-II
- TJ-II: Measurements using Gas Puff Imaging system
- TJ-II: Multipellet injection in NBI plasmas
- TJ-II: On the electrostatic transport driven by Alfvén modes and broadband turbulence in the plasma edge region of the TJ-II stellarator
- TJ-II: On the physics of the density limit
- TJ-II: On the search of Zonal Flows and the influence of Alfvén Eigenmodes in the TJ-II stellarator
- TJ-II: Pellet induced Enhanced Confinement: the role of Er and turbulence
- TJ-II: Perpendicular plasma flow asymmetries in different iota magnetic configurations measured by Doppler reflectometry
- TJ-II: Physics of transport decoupling, an approach to measure the phase relation between density and temperature fluctuations
- TJ-II: Plasma turbulence and cryogenic pellet injection
- TJ-II: Radiation asymmetries and potential variations
- TJ-II: Searching for AEs suppression scenarios using off-axis ECCD
- TJ-II: Spectroscopic studies of TESPEL-shell ablation clouds
- TJ-II: Studies of liquid metal insertion n TJ-II
- TJ-II: Studies of pellet plasmoid drift in different magnetic configurations
- TJ-II: Studies of the dynamics of injected hydrogen pellets in the stellarator TJ-II
- TJ-II: Turbulent ExB transport studies using HIBP and edge probes
- TJ-II: Two dimensional distribution of plasma potential and density
- TJ-II: Validation of neutral beam current drive
- TJ-II: Why fast reaction of plasma fluctuations to ECRH ?
- TJ-II: Zeff measurement using visible bremsstrahlung (VB) with NBI heating (II)
- TJ-II: Zeff measurement using visible bremsstrahlung emissions with NBI heating