Cubic ZnS under pressure: Optical-absorption edge, phase transition, and calculated equation of state
- 15 November 1990
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 42 (14) , 9113-9118
- https://doi.org/10.1103/physrevb.42.9113
Abstract
We have measured the effect of pressure on the energy of the direct-optical-absorption edge ( gap, →) of cubic ZnS, covering the full stability range (0–15 GPa) of the tetrahedral phase. The gap exhibits a sublinear increase under pressure, with the corresponding (linear) gap deformation potential being -5.0(2) eV. X-ray diffraction shows the high-pressure phase of ZnS to have the NaCl-type structure for pressures up to at least 27 GPa. In contrast to earlier reports, this phase is not metallic but shows a broad optical-absorption edge with onset near 2 eV, which is characteristic of an indirect-gap material. Experimental results for the equation of state and band-gap deformation potential are compared with ab initio calculations based on local-density theory and the relativistic linear-muffin-tin-orbital method.
Keywords
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