The steep edge gradient region of tokamak plasmas in the high confinement regime is known to drive instabilities, which cause transport. Several diagnostics are used to allow for a high degree of characterization of low-frequency modes appearing in between type-I edge localizes modes (ELMs). These modes are dominantly observed in electron cyclotron emission (ECE) and ECE imaging measurements as a modulation of radiation temperature (δTrad). In the radial magnetic field (r) measurements, the frequency range of 4 kHz to 12 kHz is observed. The position of the mode is determined to be at the upper part of the steep gradient region, the poloidal mode velocity is changing from 1.5 ± 0.5 km s-1 to 2.5 ± 0.5 km s-1 and the toroidal mode number is ...
Studies in ASDEX Upgrade of the phenomenology and scaling of the H-mode transition, of edge-localize...
Edge localized modes (ELMs) with high frequency and low power loss (type-II ELMs) occur in high tria...
Two-dimensional temperature measurements using the electron cyclotron emission imaging diagnostic at...
The steep edge gradient region of tokamak plasmas in the high confinement regime is known to drive i...
The installation of a 2D electron cyclotron emission imaging (ECEI) diagnostic on ASDEX Upgrade has ...
The installation of a 2D electron cyclotron emission imaging (ECEI) diagnostic on ASDEX Upgrade has ...
Introduction: The ELM cycle of type-I ELMs consists of different phases characterized by the evoluti...
In the early twentieth century, scientists found out what process keeps the Sun burning: nuclear fus...
Edge localized mode ( ELM) measurements in many tokamaks, including ASDEX-Upgrade, DIII-D, JET, JT-6...
Edge localized modes (ELMs) are a severe concern for the operation of ITER due to large transient he...
The transitions from type-I to small edge localized modes (ELMs) and back are studied by the electro...
Edge-localized modes (ELMs) are relaxation-oscillation instabilities, which eject parti-cles and ene...
In the tokamak high confinement mode, large pressure gradients and current densities form close to t...
Studies in ASDEX Upgrade of the phenomenology and scaling of the H-mode transition, of edge-localize...
Edge localized modes (ELMs) with high frequency and low power loss (type-II ELMs) occur in high tria...
Two-dimensional temperature measurements using the electron cyclotron emission imaging diagnostic at...
The steep edge gradient region of tokamak plasmas in the high confinement regime is known to drive i...
The installation of a 2D electron cyclotron emission imaging (ECEI) diagnostic on ASDEX Upgrade has ...
The installation of a 2D electron cyclotron emission imaging (ECEI) diagnostic on ASDEX Upgrade has ...
Introduction: The ELM cycle of type-I ELMs consists of different phases characterized by the evoluti...
In the early twentieth century, scientists found out what process keeps the Sun burning: nuclear fus...
Edge localized mode ( ELM) measurements in many tokamaks, including ASDEX-Upgrade, DIII-D, JET, JT-6...
Edge localized modes (ELMs) are a severe concern for the operation of ITER due to large transient he...
The transitions from type-I to small edge localized modes (ELMs) and back are studied by the electro...
Edge-localized modes (ELMs) are relaxation-oscillation instabilities, which eject parti-cles and ene...
In the tokamak high confinement mode, large pressure gradients and current densities form close to t...
Studies in ASDEX Upgrade of the phenomenology and scaling of the H-mode transition, of edge-localize...
Edge localized modes (ELMs) with high frequency and low power loss (type-II ELMs) occur in high tria...
Two-dimensional temperature measurements using the electron cyclotron emission imaging diagnostic at...