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Structural Phase Diagram of LaO1?xFxBiSSe: Suppression of the Structural Phase Transition by Partial F Substitutions

机译:LAO1?XFXBISSE的结构相图:抑制部分F替换的结构相转变

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Recently, the anomalous two-fold-symmetric in-plane anisotropy of superconducting states has been observed in a layered superconductor system, LaO1xFxBiSSe (x = 0.1 and 0.5), with a tetragonal (four-fold symmetric) in-plane structure. To understand the origin of the phenomena observed in LaO1xFxBiSSe, clarification of the low-temperature structural phase diagram is needed. In this study, we have investigated the low-temperature crystal structure of LaO1xFxBiSSe (x = 0, 0.01, 0.02, 0.03, and 0.5). From synchrotron X-ray diffraction experiments, a structural transition from tetragonal to monoclinic was observed for x = 0 and 0.01 at 340 and 240 K, respectively. For x = 0.03, a structural transition and broadening of the diffraction peak were not observed down to 100 K. These facts suggest that the structural transition could be suppressed by 3% F substitution in LaO1xFxBiSSe. Furthermore, the crystal structure for x = 0.5 at 4 K was examined by low-temperature laboratory X-ray diffraction, which confirmed that the tetragonal structure is maintained at 4 K for x = 0.5. Our structural investigation suggests that the two-fold-symmetric in-plane anisotropy of superconducting states observed in LaO1xFxBiSSe was not originated from structural symmetry lowering in its average structure. To evaluate the possibility of the local structural modification like nanoscale puddles in the average tetragonal structure, further experiments are desired.
机译:最近,在层叠的超导体系统中观察到超导状态的异常两倍对称各向异性各向异性,LAO1XFXBISSE(X = 0.1和0.5),具有四边形(四倍对称)面内结构。要了解在老挝1xFXBISSE中观察到的现象的来源,需要澄清低温结构相图。在这项研究中,我们研究了LaO1xFxbisse的低温晶体结构(x = 0,0.01,0.02,0.03和0.5)。从同步X射线衍射实验,分别观察到从四边形到单斜核的结构转变,分别在340和240k处观察到X = 0和0.01。对于X = 0.03,未观察到衍射峰的结构转变和扩大到100k.这些事实表明,在老挝1xFxbisse中的3%F替代,可以抑制结构转变。此外,通过低温实验室X射线衍射检查x = 0.5的晶体结构,该X射线衍射检查,这证实了四边形结构保持在4 k的X = 0.5。我们的结构研究表明,在老挝1xFXBISSE中观察到的超导状态的两倍对称的面内各向异性尚未源于其平均结构下降的结构对称性。为了评估平均四方结构中纳米级水坑等局部结构改性的可能性,需要进一步的实验。

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