Vertical Gradient Freeze Growth of two inches Cd1−xZnxTe1−ySey ingots with different Se content
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Condensed Matter Physics
Reference32 articles.
1. X-ray topographic study of Bridgman-grown CdZnTeSe;Roy;J. Cryst. Growth,2020
2. X-ray DC response of a simple photoconductive detector based on CdZnTe film;Tao;J. Mater. Sci.: Mater. Electron.,2016
3. Evaluation of CdZnTeSe as a high-quality gamma-ray spectroscopic material with better compositional homogeneity and reduced defects;Roy;Sci. Rep.,2019
4. A comparison of point defects in Cd1− xZnxTe1− ySey crystals grown by Bridgman and traveling heater methods;Gul;J. Appl. Phys.,2017
5. Is the (Cd, Mn) Te crystal a prospective material for X-ray and γ-ray detectors;Mycielski;Physica Status Solidi (c),2005
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1. Phase Transformations in Cd0.96Mn0.04Te0.98Se0.02 Solid Solutions;Journal of Phase Equilibria and Diffusion;2024-05-18
2. Charge Trapping Effects in THM- and VGF-Grown CdZnTeSe Radiation Detectors;IEEE Transactions on Nuclear Science;2023-09
3. Regulation of the Temperature Field and Evolution of the Melt Convection Field During InP Crystal Growth with the Vertical Gradient Freeze Method;Journal of Electronic Materials;2023-08-24
4. Assessment of deep levels with selenium concentration in Cd1–xZnxTe1–ySey room temperature detector materials;Applied Physics Letters;2023-08-07
5. Growth interface study of CdTeSe crystals grown by the THM technique;Journal of Crystal Growth;2023-08
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