A time-dependent plasma discharge model has been developed for the ionization region in a high-power impulse magnetron sputtering (HiPIMS) discharge. It provides a flexible modeling tool to explore, e. g., the temporal variations of the ionized fractions of the working gas and the sputtered vapor, the electron density and temperature, and the gas rarefaction and refill processes. A separation is made between aspects that can be followed with a certain precision, based on known data, such as excitation rates, sputtering and secondary emission yield, and aspects that need to be treated as uncertain and defined by assumptions. The input parameters in the model can be changed to fit different specific applications. Examples of such changes are ...
The magnetic field is a key feature that distinguishes magnetron sputtering from simple diode sputte...
The ionization region model (IRM) is applied to model high power impulse magnetron sputtering (HiPIM...
International audienceWe use an ionization region model to explore the ionization processes in the h...
HiPIMS, high power impulse magnetron sputtering, is a promising technology that has attracted a lot ...
International audienceA high power impulse magnetron sputtering (HiPIMS) discharge process is analyz...
International audienceA high power impulse magnetron sputtering (HiPIMS) discharge process is analyz...
International audienceA high power impulse magnetron sputtering (HiPIMS) discharge process is analyz...
We apply the ionization region model (IRM) and the Orsay Boltzmann equation for electrons coupled wi...
The ionization region model (IRM) is applied to model a high power impulse magnetron sputtering disc...
The ionization region model (IRM) is applied to model a high power impulse magnetron sputtering disc...
The ionization region model (IRM) is applied to model a high power impulse magnetron sputtering disc...
The ionization region model (IRM) is applied to model a high power impulse magnetron sputtering disc...
We use an ionization region model to explore the ionization processes in the high power impulse magn...
The ionization region model (IRM) is applied to model high power impulse magnetron sputtering (HiPIM...
The magnetic field is a key feature that distinguishes magnetron sputtering from simple diode sputte...
The magnetic field is a key feature that distinguishes magnetron sputtering from simple diode sputte...
The ionization region model (IRM) is applied to model high power impulse magnetron sputtering (HiPIM...
International audienceWe use an ionization region model to explore the ionization processes in the h...
HiPIMS, high power impulse magnetron sputtering, is a promising technology that has attracted a lot ...
International audienceA high power impulse magnetron sputtering (HiPIMS) discharge process is analyz...
International audienceA high power impulse magnetron sputtering (HiPIMS) discharge process is analyz...
International audienceA high power impulse magnetron sputtering (HiPIMS) discharge process is analyz...
We apply the ionization region model (IRM) and the Orsay Boltzmann equation for electrons coupled wi...
The ionization region model (IRM) is applied to model a high power impulse magnetron sputtering disc...
The ionization region model (IRM) is applied to model a high power impulse magnetron sputtering disc...
The ionization region model (IRM) is applied to model a high power impulse magnetron sputtering disc...
The ionization region model (IRM) is applied to model a high power impulse magnetron sputtering disc...
We use an ionization region model to explore the ionization processes in the high power impulse magn...
The ionization region model (IRM) is applied to model high power impulse magnetron sputtering (HiPIM...
The magnetic field is a key feature that distinguishes magnetron sputtering from simple diode sputte...
The magnetic field is a key feature that distinguishes magnetron sputtering from simple diode sputte...
The ionization region model (IRM) is applied to model high power impulse magnetron sputtering (HiPIM...
International audienceWe use an ionization region model to explore the ionization processes in the h...