Insights into the copper HiPIMS discharge: deposition rate and ionised flux fraction

Author:

Fischer JORCID,Renner MORCID,Gudmundsson J TORCID,Rudolph MORCID,Hajihoseini HORCID,Brenning NORCID,Lundin DORCID

Abstract

Abstract The influence of pulse length, working gas pressure, and peak discharge current density on the deposition rate and ionised flux fraction in high power impulse magnetron sputtering discharges of copper is investigated experimentally using a charge-selective (electrically biasable) magnetically shielded quartz crystal microbalance (or ionmeter). The large explored parameter space covers both common process conditions and extreme cases. The measured ionised flux fraction for copper is found to be in the range from ≈10% to 80%, and to increase with increasing peak discharge current density up to a maximum at 1.25 A cm 2 , before abruptly falling off at even higher current density values. Low working gas pressure is shown to be beneficial in terms of both ionised flux fraction and deposition rate fraction. For example, decreasing the working gas pressure from 1.0 Pa to 0.5 Pa leads on average to an increase of the ionised flux fraction by 14  percentage points (pp) and of the deposition rate fraction by 4 pp taking into account all the investigated pulse lengths.

Funder

Icelandic Research Fund

Vetenskapsrådet

Evatec AG

Swedish Government Strategic Research Area in Materials Science on Functional Materials at Linköping University

Publisher

IOP Publishing

Subject

Condensed Matter Physics

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