Title :
Ion Energy Distribution Skew Control Using Phase-Locked Harmonic RF Bias Drive
Author :
Coumou, David J. ; Clark, David Hamilton ; Kummerer, Theresa ; Hopkins, Michael ; Sullivan, Dean ; Shannon, Steven
Author_Institution :
MKS Instrum. Inc., Rochester, NY, USA
Abstract :
The energy distribution of ions accelerated through a radio frequency sheath and incident on a plasma-facing material significantly influences material interaction with the plasma and can impact manufacturing at the nanoscale. Ion energy distributions are controlled through appropriate mixing of drive frequencies, which has been shown to control distribution width. This paper presents a modification to multifrequency drive for ion energy control by exploiting a digital frequency and phase controller that enables modification of the higher order moments of the distribution, specifically, controlling the skew of the distribution. By modulating the sheath with two frequencies where one frequency is the harmonic of the other and controlling the relative phase of these two waveforms incident on the plasma-facing surface, skew control is achieved. A simple empirical model is presented to describe this method, as well as experimental validation of the model and demonstration of skew control in a parallel plate capacitively coupled reactor.
Keywords :
plasma radiofrequency heating; plasma sheaths; plasma-wall interactions; capacitively coupled reactor; digital frequency; drive frequencies mixing; empirical model; higher order moments; ion energy distribution skew control; material interaction; multifrequency drive; nanoscale manufacturing; parallel plate; phase controller; phase-locked harmonic RF bias drive; plasma-facing material; plasma-facing surface; radio frequency sheath; Distribution functions; Drives; Frequency control; Harmonic analysis; Plasmas; Power supplies; Radio frequency; Automatic control; RF signals; RF signals.; digital control; digital filters; frequency-locked loops; ion energy distribution function (IEDF); phase frequency detector; phase-locked loops; plasma density; plasma properties; plasma sheaths; plasmas; radio frequency (RF); real-time systems;
Journal_Title :
Plasma Science, IEEE Transactions on
DOI :
10.1109/TPS.2014.2326600