The UMIST Linear system (ULS) is a linear plasma device designed to study plasma and atomic physics issues relevant to tokamak divertors. The ULS produces a steady state plasma beam which interacts with neutral gas in a target chamber. Dependent on the upstream conditions, either electron-ion recombination (EIR) or molecular activated recombination (MAR) may dominate. Here we report on detailed studies of the plasma spatial structure in both regimes. A specially designed optical spectroscopy probe is used to measure the visible emission, with spatial resolution less than 5 mm. Atomic and molecular lines are identified, and the results are interpreted using a collisional-radiative model, enabling the MAR rate to be calculated. One dimensiona...
Molecular activated recombination (MAR) leading to plasma detachment has been occurred by additional...
This work presents the use of a collisional-radiative model to infer plasma parameters from 2D emiss...
The coupled dynamics and kinetics between gas and plasma in the divertor region is studied by means ...
We report on studies of detached plasma operation in the UMIST linear system (ULS). The ULS, designe...
The University of Manchester Linear System (ULS) [M. G. Rusbridge et al., Plasma Phys. Controlled Fu...
We have investigated detailed plasma structure around the recombination front region (RFR), where vo...
We have presented the experimental observation of the spatial structure of Molecular Assisted Recomb...
Atomic and molecular processes in volumetric recombination phenomena relevant to divertor detachment...
Recombination in a helium and helium-hydrogen plasma was experimentally investigated in the linear d...
Predictions for the operation of tokamak divertors are reliant on edge plasma simulations typically ...
Predictions for the operation of tokamak divertors are reliant on edge plasma simulations typically ...
Molecule-Activated Recombination (MAR) effect is re-considered in view of divertor plasma conditions...
International audiencePredictions for the operation of tokamak divertors are reliant on edge plasma ...
We present the first analysis of the atomic and molecular processes at play during detachment in the...
Detached plasma has been observed on different fusion devices, such as DIII-D, JET. Traditionally, E...
Molecular activated recombination (MAR) leading to plasma detachment has been occurred by additional...
This work presents the use of a collisional-radiative model to infer plasma parameters from 2D emiss...
The coupled dynamics and kinetics between gas and plasma in the divertor region is studied by means ...
We report on studies of detached plasma operation in the UMIST linear system (ULS). The ULS, designe...
The University of Manchester Linear System (ULS) [M. G. Rusbridge et al., Plasma Phys. Controlled Fu...
We have investigated detailed plasma structure around the recombination front region (RFR), where vo...
We have presented the experimental observation of the spatial structure of Molecular Assisted Recomb...
Atomic and molecular processes in volumetric recombination phenomena relevant to divertor detachment...
Recombination in a helium and helium-hydrogen plasma was experimentally investigated in the linear d...
Predictions for the operation of tokamak divertors are reliant on edge plasma simulations typically ...
Predictions for the operation of tokamak divertors are reliant on edge plasma simulations typically ...
Molecule-Activated Recombination (MAR) effect is re-considered in view of divertor plasma conditions...
International audiencePredictions for the operation of tokamak divertors are reliant on edge plasma ...
We present the first analysis of the atomic and molecular processes at play during detachment in the...
Detached plasma has been observed on different fusion devices, such as DIII-D, JET. Traditionally, E...
Molecular activated recombination (MAR) leading to plasma detachment has been occurred by additional...
This work presents the use of a collisional-radiative model to infer plasma parameters from 2D emiss...
The coupled dynamics and kinetics between gas and plasma in the divertor region is studied by means ...