JOURNAL ARTICLE

Lattice Vibrations of Magnetic Semiconductor Chalcogenide Spinels, Hgx Zn1-x Cr2 Se4

Kunio WakamuraToshihiro AraiSeinosuke OnariKeiei KudoTatsuo Takahashi

Year: 1973 Journal:   Journal of the Physical Society of Japan Vol: 35 (5)Pages: 1430-1436   Publisher: Physical Society of Japan

Abstract

The infrared absorption spectra due to the lattice vibrations and the intrinsic transitions in mixed crystals, Hg x Zn 1- x Cr 2 Se 4 have been studied for x =0∼1. Four absorption bands of fundamental lattice vibrations were observed in pure crystals for x =0 and 1, and five intense absorption bands were observed in mixed crystals. The concentration dependence of the three bands shows one-mode type behaviour, whereas that of the other two bands shows two-mode type behaviour. In addition to these bands, a few weak absorption bands were found near the two-mode type absorption bands. The concentration dependence of lattice vibration frequencies is interpreted by a simple model which takes into consideration the six force constants. The main features of the model are that the two force constants and the mass relating to the Hg site are varied continuously with the Hg concentration and that two kinds of clusters are taken into consideration. For these crystals, the positions of the fundamental absorption edges shift linearly toward lower energy side with the Hg concentration, and the lattice constants determined from X-ray analysis in mixed crystals obey Vegard's law.

Keywords:
Chalcogenide Lattice constant Lattice vibration Lattice (music) Absorption spectroscopy Analytical Chemistry (journal) Force constant Materials science Absorption (acoustics) Spectral line Magnetic semiconductor Semiconductor Infrared spectroscopy Condensed matter physics Phonon Chemistry Physics Optics Diffraction

Metrics

40
Cited By
2.20
FWCI (Field Weighted Citation Impact)
16
Refs
0.86
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Topics

Phase-change materials and chalcogenides
Physical Sciences →  Materials Science →  Materials Chemistry
Crystal Structures and Properties
Physical Sciences →  Materials Science →  Electronic, Optical and Magnetic Materials
Chalcogenide Semiconductor Thin Films
Physical Sciences →  Engineering →  Electrical and Electronic Engineering

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