Trace rare gases optical emission spectroscopy for determination of electron temperatures and species concentrations in chlorine-containing plasmas

被引:29
作者
Donnelly, VM [1 ]
Malyshev, MV [1 ]
Kornblit, A [1 ]
Ciampa, NA [1 ]
Colonell, JI [1 ]
Lee, JTC [1 ]
机构
[1] Lucent Technol, Bell Labs, Murray Hill, NJ 07974 USA
来源
JAPANESE JOURNAL OF APPLIED PHYSICS PART 1-REGULAR PAPERS SHORT NOTES & REVIEW PAPERS | 1998年 / 37卷 / 4B期
关键词
electron temperature; optical diagnostics; plasma diagnostics; chlorine plasma; etching;
D O I
10.1143/JJAP.37.2388
中图分类号
O59 [应用物理学];
学科分类号
摘要
Trace rare gas optical emission spectroscopy has been used to obtain electron temperatures (T-e) and percent dissociation of Cl-2 in chlorine-containing, high-density inductively (transformer) coupled plasmas. In this method, a small amount of an equal mixture of the rare gases is added to the plasma and emission spectra that include lines from the rare,oases are recorded. Modeling of the dependence of the rare gas emission intensities on T-e allows T-e to be derived from the best match between the observed and computed intensities. T-e in Cl-2 plasmas increases from 1.7 eV at 20 mTorr to 3.4 eV at 0.5 mTorr. These values are 1.3 to 1.8 times lower than those recorded with a Langmuir probe. This discrepancy is due at least in part to artifacts associated with using a single Langmuir probe in a reactor with semiinsulating walls. Absolute percent dissociations of Cl-2 were determined by monitoring the intensity of an emission band of Cl-2, normalized to emission from Ar and Xe. Cl-2 percent dissociation increased with power and decreased with pressure. At 1.0 mTorr, Cl-2 is about 85% dissociated at a power density of 0.1 W/cm(3) and 95% dissociated at 0.3 W/cm(3) in a Cl-2 plasma. Addition of BCl3 to Cl-2 increases the dissociation of Cl-2.
引用
收藏
页码:2388 / 2393
页数:6
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