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Morphological and Optical Characteristics of Transition Metal Doped PVT Grown Zinc Selenide Single Crystal
Author(s) -
Singh Narsingh Bahadur,
Su ChingHua,
Arnold Bradley,
Choa FowSen,
Cullum Brian,
Sova Stacey,
Cooper Christopher
Publication year - 2019
Publication title -
crystal research and technology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.377
H-Index - 64
eISSN - 1521-4079
pISSN - 0232-1300
DOI - 10.1002/crat.201800231
Subject(s) - zinc selenide , materials science , doping , crystal (programming language) , dopant , crystallinity , single crystal , analytical chemistry (journal) , cadmium selenide , transition metal , zinc , absorption (acoustics) , optics , crystallography , chemistry , optoelectronics , metallurgy , physics , chromatography , composite material , programming language , biochemistry , quantum dot , catalysis , computer science
An experimental study on the absorption, emission, crystal quality, and morphological characteristics of the transition metal doped zinc selenide (ZnSe) crystals is performed. This study focuses on the effect of dopant and thermal convection on crystal characteristics. Two ZnSe crystals, one doped with Fe 2+ and the other with Cr 2+ , are grown using the physical vapor transport method. The bulk crystal samples are further divided into localized zones and overall crystallinity is evaluated using optical transparency, scanning electron microscopy, and X‐ray diffraction analyses. Gross defects, such as large precipitates, inclusions and voids, are not observed. The radial segregation and its effect on morphology and optical fluorescence and emission are studied for both doped crystals using different spots along the radius for both crystals. The absorption and emission properties are investigated and the results are discussed in terms of the energy levels from which the optical transitions occur.

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