Modified Physical Vapor Transport Growth of SiC - Control of Gas Phase Composition for Improved Process Conditions

Author:

Wellmann Peter J.1,Straubinger Thomas L.2,Desperrier Patrick3,Müller Ralf3,Künecke Ulrike3,Sakwe Sakwe Aloysius1,Schmitt Holger3,Winnacker Albrecht4,Blanquet Elisabeth5,Dedulle Jean Marc6,Pons Michel6

Affiliation:

1. University of Erlangen-Nuremberg

2. SiCrystal AG

3. University of Erlangen-Nürnberg

4. GKSS Research Center

5. Domaine Universitaire

6. Grenoble INP–CNRS-UJF

Abstract

We review the development of a modified physical vapor transport (M-PVT) growth technique for the preparation of SiC single crystals which makes use of an additional gas pipe into the growth cell. While the gas phase composition is basically fixed in conventional physical vapor transport (PVT) growth by crucible design and temperature field, the gas inlet of the MPVT configuration allows the direct tuning of the gas phase composition for improved growth conditions. The phrase "additional" means that only small amounts of extra gases are supplied in order to fine-tune the gas phase composition. We discuss the experimental implementation of the extra gas pipe and present numerical simulations of temperature field and mass transport in the new growth configuration. The potential of the growth technique will be outlined by showing the improvements achieved for p-type doping of 4H-SiC with aluminum, i.e. [Al]=9⋅1019cm-3 and ρ<0.2Ωcm, and n-type doping of SiC with phosphorous, i.e. [P]=7.8⋅1017cm-3.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

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