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Garg, A.B., Vijayakumar, V., Modak, P., Gaitonde, D.M., Rao, R.S., Godwal, B.K. and Sikka, S.K. (2002) High-Pressure Resistance and Equation-of-State Anomalies in Zn: A Possible Lifshitz Transition. Journal of Physics: Condensed Matter, 14, 8795-8802.
https://doi.org/10.1088/0953-8984/14/38/304
has been cited by the following article:
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TITLE:
The Zinc Story under High Pressure
AUTHORS:
Kenichi Takemura
KEYWORDS:
Zinc, High Pressure, Crystal Structure, Electronic Topological Transition
JOURNAL NAME:
Journal of Minerals and Materials Characterization and Engineering,
Vol.7 No.5,
September
25,
2019
ABSTRACT: A historical review is presented on the experimental and theoretical studies on Zn under high pressure. Based on our high-pressure powder x-ray diffraction experiments that have been done for nearly a decade, we describe the structural change of Zn up to 126 GPa at room temperature. Although several experimental and theoretical studies indicated an anomalous change of the c/a axial ratio with pressure, we found no such an anomaly within our experimental uncertainty. Our high-pressure low-temperature experiments up to 18 GPa at 40 K also gave no evidence of the c/a anomaly. We suspect that the pressure-transmitting media played an important role in producing the anomaly. The structural anisotropy of Zn is drastically reduced at high pressures, which would be a general trend for hexagonal close-packed (hcp) metals.