A system very similar to a dielectric barrier discharge, but with a simple stationary dc voltage, can be realized by sandwiching a gas discharge and a high-ohmic semiconductor layer between two planar electrodes. In experiments this system forms spatiotemporal and temporal patterns spontaneously, quite similarly to, e.g., Rayleigh-Benard convection. Here it is modeled with a simple discharge model with space charge effects, and the semiconductor is approximated as a linear conductor. In previous work, this model has reproduced the phase transition from homogeneous stationary to homogeneous oscillating states semiquantitatively. In the present work, the formation of spatial patterns is investigated through linear stability analysis and throu...
A DC-driven barrier discharge is a gas discharge layer and a high-Ohmic semiconductor layer sandwi...
A summary is given of parts of the work that has been done on pattern formation in planar ac- and dc...
In this thesis, numerical modelling of temporal and spatial pattern formation in the planar layered ...
A system very similar to a dielectric barrier discharge, but with a simple stationary dc voltage, ca...
A system of gas discharge and semiconductor layer forms spatial and temporal patterns spontaneously ...
A short gas-discharge layer sandwiched with a semiconductor layer between planar electrodes shows a ...
A short gas discharge layer sandwiched with a semiconductor layer between planar electrodes shows a ...
A three-dimensional numerical model is developed and applied to study the temporal and spatial patte...
Recent numerical PDE-solutions for spatio-temporal patterns in barrier discharges are presented that...
A DC-driven "barrier" discharge is a gas discharge layer and a high-Ohmic semiconductor layer sandwi...
A DC-driven ”barrier ” discharge is a gas discharge layer and a high-Ohmic semiconductor layer sandw...
A three-dimensional numerical model is developed and applied to study the temporal and spatial patte...
A DC-driven "barrier" discharge is a gas discharge layer and a high-Ohmic semiconductor layer sandwi...
A DC-driven barrier discharge is a gas discharge layer and a high-Ohmic semiconductor layer sandwi...
A summary is given of parts of the work that has been done on pattern formation in planar ac- and dc...
In this thesis, numerical modelling of temporal and spatial pattern formation in the planar layered ...
A system very similar to a dielectric barrier discharge, but with a simple stationary dc voltage, ca...
A system of gas discharge and semiconductor layer forms spatial and temporal patterns spontaneously ...
A short gas-discharge layer sandwiched with a semiconductor layer between planar electrodes shows a ...
A short gas discharge layer sandwiched with a semiconductor layer between planar electrodes shows a ...
A three-dimensional numerical model is developed and applied to study the temporal and spatial patte...
Recent numerical PDE-solutions for spatio-temporal patterns in barrier discharges are presented that...
A DC-driven "barrier" discharge is a gas discharge layer and a high-Ohmic semiconductor layer sandwi...
A DC-driven ”barrier ” discharge is a gas discharge layer and a high-Ohmic semiconductor layer sandw...
A three-dimensional numerical model is developed and applied to study the temporal and spatial patte...
A DC-driven "barrier" discharge is a gas discharge layer and a high-Ohmic semiconductor layer sandwi...
A DC-driven barrier discharge is a gas discharge layer and a high-Ohmic semiconductor layer sandwi...
A summary is given of parts of the work that has been done on pattern formation in planar ac- and dc...
In this thesis, numerical modelling of temporal and spatial pattern formation in the planar layered ...