Multiphysical simulation analysis of the dislocation structure in germanium single crystals


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Abstract

To grow high-quality germanium crystals is one of the most important problems of growth industry. The dislocation density is an important parameter of the quality of single crystals. The dislocation densities in germanium crystals 100 mm in diameter, which have various shapes of the side surface and are grown by the Czochralski technique, are experimentally measured. The crystal growth is numerically simulated using heat-transfer and hydrodynamics models and the Alexander–Haasen dislocation model in terms of the CGSim software package. A comparison of the experimental and calculated dislocation densities shows that the dislocation model can be applied to study lattice defects in germanium crystals and to improve their quality.

About the authors

O. I. Podkopaev

AO Germanii

Email: vladimir.artemyev@str-soft.com
Russian Federation, Krasnoyarsk, 660027

V. V. Artemyev

STR Group, Inc.

Author for correspondence.
Email: vladimir.artemyev@str-soft.com
Russian Federation, St. Petersburg, 194156

A. D. Smirnov

STR Group, Inc.

Email: vladimir.artemyev@str-soft.com
Russian Federation, St. Petersburg, 194156

V. M. Mamedov

STR Group, Inc.

Email: vladimir.artemyev@str-soft.com
Russian Federation, St. Petersburg, 194156

A. P. Sid’ko

STR Group, Inc.

Email: vladimir.artemyev@str-soft.com
Russian Federation, St. Petersburg, 194156

V. V. Kalaev

STR Group, Inc.

Email: vladimir.artemyev@str-soft.com
Russian Federation, St. Petersburg, 194156

E. D. Kravtsova

Siberian Federal University

Email: vladimir.artemyev@str-soft.com
Russian Federation, Krasnoyarsk, 660041

A. F. Shimanskii

Siberian Federal University

Email: vladimir.artemyev@str-soft.com
Russian Federation, Krasnoyarsk, 660041

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