The low thermal gradient CZ technique as a way of growing of dislocation-free germanium crystals
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Condensed Matter Physics
Reference6 articles.
1. Mechanical strength of GeSi alloy
2. Automated pulling from the melt — an effective method for growing large alkali halide single crystals for optical and scintillation applications
3. The weighing method of automatic Czochralski crystal growth
4. A new approach to the CZ crystal growth weighing control
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1. Parametric numerical study of dislocation density distribution in Czochralski-grown germanium crystals;Journal of Crystal Growth;2023-11
2. A Coupled Approach to Compute the Dislocation Density Development during Czochralski Growth and Its Application to the Growth of High-Purity Germanium (HPGe);Crystals;2023-09-28
3. Effect of the pulling, crystal and crucible rotation rate on the thermal stress and the melt–crystal interface in the Czochralski growth of germanium crystals;CrystEngComm;2021
4. Influence of Low Axial Temperature Gradient on Ga-Doped Germanium Crystal Growth by the Vertical Bridgman Method;Crystallography Reports;2020-09
5. Technology development of high purity germanium crystals for radiation detectors;Journal of Crystal Growth;2020-02
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