High-pressure phase transformation and metastable phases of a Si0.29Ge0.71 alloy using a diamond anvil cell
Abstract
We investigated the high-pressure phase transformation of a Si0.29Ge0.71 alloy grown by a traveling liquidus-zone (TLZ) method. The TLZ-grown Si0.29Ge0.71 alloy was subjected to high pressures of up to ∼15 GPa using a diamond anvil cell. In situ synchrotron X-ray diffraction (XRD) and micro-Raman measurements revealed the appearance of a tetragonal β-Sn phase at 12.1 GPa. A weakened residual diamond-cubic (dc) diffraction peak together with dominant β-Sn peaks was present at 15.2 GPa. Upon depressurization, a metastable rhombohedral r8 phase appeared at 8.4 GPa. When depressurized to ambient pressure, the XRD profile showed an almost body-centered-cubic bc8 phase with residual weak r8 and dc diffraction peaks. No appreciable Raman peaks were observed upon depressurization down to 4.1 GPa, but weak peaks appeared at ∼283 and ∼396 cm−1 at ambient pressure. Theoretical calculations based on density functional perturbation theory indicated that the observed peaks were not related to bc8 but rather to hexagonal diamond (hd). These results indicate that a bc8 → hd phase transformation was induced by laser heating during the Raman measurement.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (7)
Yoshifumi Ikoma
Department of Materials, Kyushu University 1 , Fukuoka 819-0395,
Yuma Sato
Hirokazu Kadobayashi
Saori Kawaguchi-Imada
Seung Zeon Han
Extreme Materials Research Institute, Korea Institute of Materials Science 5 , Changwon, Gyeongnam 51508,
Eun-Ae Choi
Extreme Materials Research Institute, Korea Institute of Materials Science 5 , Changwon, Gyeongnam 51508,
Yasutomo Arai
Japan Aerospace Exploration Agency 6 , Tsukuba, Ibaraki 305-8505,