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The vacuum evaporation of single crystal thin films of silicon

A.P. Hale, B.D. James

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Abstract

Using a vacuum of about 10-6mm, single crystal silicon films have been evaporated onto a silicon substrate. Source and substrate temperatures and the rate of deposition are critical parameters in attaining epitaxy with the substrate. Where the source silicon is heated in a crucible, the crucible material is important. Physical imperfections, doping and electrical characteristics of the films are discussed, together with devices made from them.

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What this paper is about

Using a vacuum of about 10-6mm, single crystal silicon films have been evaporated onto a silicon substrate. Source and substrate temperatures and the rate of deposition are critical parameters in attaining epitaxy with the substrate. Where the source silicon is heated in a crucible, the crucible material is important. Physical imperfections, doping and electrical characteristics of the films are discussed, together with devices made from them.

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Available abstract

Using a vacuum of about 10-6mm, single crystal silicon films have been evaporated onto a silicon substrate. Source and substrate temperatures and the rate of deposition are critical parameters in attaining epitaxy with the substrate. Where the source silicon is heated in a crucible, the crucible material is important. Physical imperfections, doping and electrical characteristics of the films are discussed, together with devices made from them.

Key concepts: Crucible (geodemography), Silicon, Substrate (aquarium), Materials science, Vacuum evaporation, Epitaxy, Evaporation, Optoelectronics

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