We have investigated detailed plasma structure around the recombination front region (RFR), where volume electron-ion recombination (EIR) strongly occurs in detached plasmas, by using two-dimensional (2D) movable probe system as well as laser Thomson scattering diagnostics. The 2D distribution of electron density, electron temperature, and plasma potential around the RFR, has been revealed for the first time. The spatial distribution of the particle loss rate due to EIR estimated from electron temperature and electron density profiles indicated that the three-dimensional structure of the RFR adopts a cone structure. Furthermore, in the peripheral region of the RFR, the radial profile of the electron density was widened locally with increasi...
We have constructed a new diagnostic system using laser Thomson scattering for the study of spatial ...
Molecular activated recombination (MAR) leading to plasma detachment has been occurred by additional...
We investigated the effects of magnetic field structure on detached plasma formation by simulating m...
We have investigated detailed plasma structure around the recombination front region (RFR), where vo...
The University of Manchester Linear System (ULS) [M. G. Rusbridge et al., Plasma Phys. Controlled Fu...
Atomic and molecular processes in volumetric recombination phenomena relevant to divertor detachment...
We report on studies of detached plasma operation in the UMIST linear system (ULS). The ULS, designe...
We will report on a comprehensive study of the dynamic response of the detached recombining plasma i...
Recombination in a helium and helium-hydrogen plasma was experimentally investigated in the linear d...
The UMIST Linear system (ULS) is a linear plasma device designed to study plasma and atomic physics ...
A plasma flow structure is investigated using a Mach probe under detached plasma condition in a line...
Detached plasma has been observed on different fusion devices, such as DIII-D, JET. Traditionally, E...
With the development of a fusion reactor the investigation of the interaction between the hot plasma...
We have presented the experimental observation of the spatial structure of Molecular Assisted Recomb...
Abstract: We investigate the agyrotropic nature of electron distribution functions and their substru...
We have constructed a new diagnostic system using laser Thomson scattering for the study of spatial ...
Molecular activated recombination (MAR) leading to plasma detachment has been occurred by additional...
We investigated the effects of magnetic field structure on detached plasma formation by simulating m...
We have investigated detailed plasma structure around the recombination front region (RFR), where vo...
The University of Manchester Linear System (ULS) [M. G. Rusbridge et al., Plasma Phys. Controlled Fu...
Atomic and molecular processes in volumetric recombination phenomena relevant to divertor detachment...
We report on studies of detached plasma operation in the UMIST linear system (ULS). The ULS, designe...
We will report on a comprehensive study of the dynamic response of the detached recombining plasma i...
Recombination in a helium and helium-hydrogen plasma was experimentally investigated in the linear d...
The UMIST Linear system (ULS) is a linear plasma device designed to study plasma and atomic physics ...
A plasma flow structure is investigated using a Mach probe under detached plasma condition in a line...
Detached plasma has been observed on different fusion devices, such as DIII-D, JET. Traditionally, E...
With the development of a fusion reactor the investigation of the interaction between the hot plasma...
We have presented the experimental observation of the spatial structure of Molecular Assisted Recomb...
Abstract: We investigate the agyrotropic nature of electron distribution functions and their substru...
We have constructed a new diagnostic system using laser Thomson scattering for the study of spatial ...
Molecular activated recombination (MAR) leading to plasma detachment has been occurred by additional...
We investigated the effects of magnetic field structure on detached plasma formation by simulating m...