Applied Physics Letters · 1990 · 27 citations · 6 references
Directional EtchingEngineeringChlorine PlasmaIntegrated CircuitsSilicon On InsulatorPlasma ProcessingNanoelectronicsNanolithography MethodMaterials ScienceElectrical EngineeringPhysicsNanotechnologySemiconductor Device FabricationMicroelectronicsPlasma EtchingInduction PeriodMicrofabricationSurface ScienceApplied PhysicsPolycrystalline SiliconPerfect Selectivity
Using a newly developed ultraclean electron cyclotron resonance plasma etcher, Si wafers masked by SiO2 were etched with a chlorine plasma at pressures of 0.6–4.0 mTorr with a microwave power of 300–700 W. Ultraclean processing under a low ion energy condition at high pressures has revealed that there is an induction period during which time there is no SiO2 etching. This is not observed with Si. During the induction period, perfectly selective etching for Si to SiO2 has been achieved. Under this perfectly selective condition, anisotropic tenth micron patterns of polycrystalline silicon have been obtained with little undercut.
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Keizô Suzuki, Sadayuki Okudaira, N. Sakudo et al. · Japanese Journal of Applied Physics · 1977 · 235 citations
T. Ohmi, T. Ichikawa, T. Shibata et al. · Applied Physics Letters · 1988 · 75 citations
Radio-frequency biased microwave plasma etching technique: A method to increase SiO2 etch rate
Keizô Suzuki, Ken Ninomiya, Shigeru Nishimatsu et al. · Journal of Vacuum Science & Technology B Microelectronics Processing and Phenomena · 1985 · 48 citations
Substrate Surface Potential, Electrical Engineering, Plasma Electronics +11
Keizô Suzuki, Ken Ninomiya, Shigeru Mishimatsu · Vacuum · 1984 · 37 citations