Ion and electron dynamics in the sheath of radio-frequency glow discharges
- 1 March 1991
- journal article
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 69 (5), 2909-2922
- https://doi.org/10.1063/1.348601
Abstract
The distribution of ion energies and the temporal modulation of ion and electron currents were measured at the cathode of an asymmetric, capacitively coupled rf discharge system operated at 13.56 MHz. The ion energy distributions (IEDs) were found to exhibit pronounced features, namely a characteristic series of peaks and double peaks, their position and intensity depending strongly on process parameters such as self‐bias voltage and pressure. Those structured IEDs have been observed for a variety of gases including argon, oxygen, hydrogen, and benzene. The IED features are explained by the rf modulation of the sheath potential in combination with the creation of thermal ions by charge‐exchange processes in the sheath. A model for the ion transport through collisional rf sheaths is presented which satisfactorily explains the observed IEDs. It will be shown that the observed features are an inherent property of capacitively coupled rf discharges. By analyzing these structures detailed information about the spatial field distribution in the sheath and the transport of ions through rf plasma sheaths is obtained. The time‐resolved measurements revealed that the ion current behind the cathode is strongly modulated. This temporal modulation has been described by the same theory confirming the applicability of the present model. Finally the electron current was found to be confined to short periodic pulses of 2–3 ns width.Keywords
This publication has 13 references indexed in Scilit:
- Structured ion energy distribution in radio frequency glow-discharge systemsApplied Physics Letters, 1989
- Monte Carlo simulation of ion transport through rf glow-discharge sheathsJournal of Applied Physics, 1988
- Ion energy measurement at the powered electrode in an rf dischargeJournal of Applied Physics, 1988
- Ion transit through capacitively coupled Ar sheaths: Ion current and energy distributionJournal of Applied Physics, 1988
- Ion bombardment energy distributions in radio-frequency glow-discharge systemsJournal of Applied Physics, 1986
- rf-plasma deposited amorphous hydrogenated hard carbon thin films: Preparation, properties, and applicationsJournal of Applied Physics, 1983
- A comparative study of the radio frequency discharge in gas mixtures of helium with flourine, oxygen, nitrogen, and argonJournal of Applied Physics, 1980
- Positive-ion bombardment of substrates in rf diode glow discharge sputteringJournal of Applied Physics, 1972
- Calculation of Ion Bombarding Energy and Its Distribution in rf SputteringPhysical Review B, 1968
- Ion Energies at the Cathode of a Glow DischargePhysical Review B, 1963