Cite this article:
Dong-Liang Yang, Jing Liu, Chuan-Long Lin, Qiu-Min Jing, Yi Zhang, Yu Gong, Yan-Chun Li, Xiao-Dong Li. Phase transitions in bismuth under rapid compressionJ. Chin. Phys. B, 2019, 28(3): 036201.
| Dong-Liang Yang, Jing Liu, Chuan-Long Lin, Qiu-Min Jing, Yi Zhang, Yu Gong, Yan-Chun Li, Xiao-Dong Li. Phase transitions in bismuth under rapid compressionJ. Chin. Phys. B, 2019, 28(3): 036201. |
Phase transitions in bismuth under rapid compression
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Abstract
The structural phase transitions of bismuth under rapid compression has been investigated in a dynamic diamond anvil cell using time-resolved synchrotron x-ray diffraction. As the pressure increases, the transformations from phase I, to phase Ⅱ, to phase Ⅲ, and then to phase V have been observed under different compression rates at 300 K. Compared with static compression results, no new phase transition sequence appears under rapid compression at compression rate from 0.20 GPa/s to 183.8 GPa/s. However, during the process across the transition from phase Ⅲ to phase V, the volume fraction of product phase as a function of pressure can be well fitted by a compression-rate-dependent sigmoidal curve. The resulting parameters indicate that the activation energy related to this phase transition, as well as the onset transition pressure, shows a compression-rate-dependent performance. A strong dependence of over-pressurization on compression rate occurs under rapid compression. A formula for over-pressure has been proposed, which can be used to quantify the over-pressurization. -
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