论文标题

超导体FESE 0.89S0.11中高压处的晶体结构和相变

Crystal structure and phase transitions at high pressures in the superconductor FeSe0.89S0.11

论文作者

Nikiforova, Yulia A., Ivanova, Anna G., Frolov, Kirill V., Lyubutin, Igor S., Chareev, Dmitriy A., Baskakov, Arseniy O., Starchikov, Sergey S., Troyan, Ivan A., Lyubutina, Mariana V., Naumov, Pavel G., Abdel-Hafiez, Mahmoud

论文摘要

我们在压缩和减压模式下,在高压高达18.5 GPA的高压下,通过粉末同步器X射线衍射在S掺杂的FESE超导体中的结构相变。为了产生高准静水压力,使用了充满氦气的钻石砧细胞作为压力传输培养基。发现在环境压力和室温下,S掺杂的FESE具有四方结构。在压缩下,在10 GPA的区域中,观察到从四方向正骨结构的相变,该结构持续到18.5 GPa。我们的结果强烈表明,在减压下,随着施加的压力降低至6 GPA,然后完全去除,大多数样品将重结合到结构类型NIA的六边形相。但是,样品的另一部分仍处于高压正压相,而四方相未恢复。这些观察结果表明了在压力下相变时掺杂FESE的结构特性的强烈滞后。

We report on the structural phase transitions in the S doped FeSe superconductor by powder synchrotron X ray diffraction at high pressures up to 18.5 GPa under compression and decompression modes. In order to create high quasi hydrostatic pressures, diamond anvil cells filled with helium as a pressure transmitting medium were used. It was found that at ambient pressure and room temperature, S doped FeSe has a tetragonal structure. Under compression, in the region of 10 GPa, a phase transition from the tetragonal into the orthorhombic structure is observed, which persists up to 18.5 GPa. Our results strongly suggest that, at decompression, as the applied pressure decreases to 6 GPa and then is completely removed, most of the sample recrystallizes into the hexagonal phase of the structural type NiAs. However, the other part of the sample remains in the high pressure orthorhombic phase, while the tetragonal phase is not restored. These observations illustrate a strong hysteresis of the structural properties of S doped FeSe during a phase transition under pressure.

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