The components of the neutral- and plasma-surface interaction model used in the Monte Carlo neutral transport code DEGAS 2 are reviewed. The idealized surfaces and processes handled by that model are inadequate for accurately simulating neutral transport behavior in present day and future fusion devices. We identify some of the physical processes missing from the model, such as mixed materials and implanted hydrogen, and make some suggestions for improving the model
Design of tokamak divertors relies heavily on plasma edge codes such as SOLPS-ITER to extrapolate fr...
The effects of neutral particles on the conditions of the plasma edge play a key role in divertor an...
Our objective is to develop an accurate self-consistent model for plasma and neutral sin the edge of...
The transport of neutral atoms and molecules in the edge and divertor regions of fusion experiments ...
A series of experiments on the effect of divertor baffling on the Alcator C-Mod tokamak provides str...
A Monte Carlo neutral transport routine, based on DEGAS2, has been coupled to the guiding center ion...
A Monte Carlo neutral transport routine, based on DEGAS2, has been coupled to the guiding center ion...
Neutral transport in the high density, low temperature plasma regime is examined using the DEGAS 2 M...
Any selfconsistent modeling of the plasma in a Tokamak boundary-layer must include neutral particle ...
A numerical study is done of a plasma in contact with a cold solid surface that is emitting a neutra...
Neutral gas physics and neutral interactions with the plasma are key aspects of edge plasma and dive...
At present, (partially) detached divertor operation is considered as a necessity to obtain acceptabl...
Transport of neutral particles in non-axisymmetric anchor region of the GAMMA 10 tandem mirror is de...
The effects of neutral particles on the conditions of the plasma edge playa key role in divertor and...
Plasma edge simulations are extensively used for the development of operational scenarios of existin...
Design of tokamak divertors relies heavily on plasma edge codes such as SOLPS-ITER to extrapolate fr...
The effects of neutral particles on the conditions of the plasma edge play a key role in divertor an...
Our objective is to develop an accurate self-consistent model for plasma and neutral sin the edge of...
The transport of neutral atoms and molecules in the edge and divertor regions of fusion experiments ...
A series of experiments on the effect of divertor baffling on the Alcator C-Mod tokamak provides str...
A Monte Carlo neutral transport routine, based on DEGAS2, has been coupled to the guiding center ion...
A Monte Carlo neutral transport routine, based on DEGAS2, has been coupled to the guiding center ion...
Neutral transport in the high density, low temperature plasma regime is examined using the DEGAS 2 M...
Any selfconsistent modeling of the plasma in a Tokamak boundary-layer must include neutral particle ...
A numerical study is done of a plasma in contact with a cold solid surface that is emitting a neutra...
Neutral gas physics and neutral interactions with the plasma are key aspects of edge plasma and dive...
At present, (partially) detached divertor operation is considered as a necessity to obtain acceptabl...
Transport of neutral particles in non-axisymmetric anchor region of the GAMMA 10 tandem mirror is de...
The effects of neutral particles on the conditions of the plasma edge playa key role in divertor and...
Plasma edge simulations are extensively used for the development of operational scenarios of existin...
Design of tokamak divertors relies heavily on plasma edge codes such as SOLPS-ITER to extrapolate fr...
The effects of neutral particles on the conditions of the plasma edge play a key role in divertor an...
Our objective is to develop an accurate self-consistent model for plasma and neutral sin the edge of...