论文标题
SR0.5RE0.5FBIS2(RE:LA,CE,PR,ND,SM)在SR0.5RE0.5FBIS中的两个散装阶段的演变。
Evolution of two bulk-superconducting phases in Sr0.5RE0.5FBiS2 (RE: La, Ce, Pr, Nd, Sm) by external hydrostatic pressure effect
论文作者
论文摘要
通过固态反应合成了SR1-XREXFBIS2的多晶样品(RE:LA,CE,PR,ND和SM),并使用Synchrotron X射线衍射进行表征。尽管所有SR0.5RE0.5FBIS2样品在环境压力下在2.1-2.7 K范围内表现出在过渡温度(TC)时表现出超导性,但估计的超导体积分数很小。这表明在环境压力下,这些样品中超导性的非膨胀性质。在施加外部静水压力时,实现了散装超导阶段的显着演变。接近低于1 GPA的压力,用2.5-2.8 K的TC诱导大量超导性,这被称为低P期。此外,在较高的压力下观察到具有大量特征的高-P相(TC = 10.0-10.8 K)。压力-TC相图表明,高-P相出现的临界压力倾向于随着掺杂离子的离子半径的降低而增加。根据SR0.5LA0.5FBIS2的高压X射线衍射测量,从四方到单斜胶质层次的结构相变为大约1.1 GPa。因此,该相变表明,压力诱导的超导驱动器转移过渡类似于LAO0.5F0.5BIS2中的跃迁。外部静水压力效应诱导的SR0.5RE0.5FBIS2中的散装超导相对于评估基于BICH2的超导体的超导性机制有用。
Polycrystalline samples of Sr1-xRExFBiS2 (RE: La, Ce, Pr, Nd, and Sm) were synthesized via the solid-state reaction and characterized using synchrotron X-ray diffraction. Although all the Sr0.5RE0.5FBiS2 samples exhibited superconductivity at transition temperatures (Tc) within the range of 2.1-2.7 K under ambient pressure, the estimated superconducting volume fraction was small. This indicated the non-bulk nature of superconductivity in these samples under ambient pressure. A dramatic evolution of the bulk superconducting phases was achieved on applying an external hydrostatic pressure. Near pressures below 1 GPa, bulk superconductivity was induced with a Tc of 2.5-2.8 K, which is termed as the low-P phase. Moreover, the high-P phase (Tc = 10.0-10.8 K) featuring bulk characteristics was observed at higher pressures. Pressure-Tc phase diagrams indicated that the critical pressure for the emergence of the high-P phase tends to increase with decreasing ionic radius of the doped RE ions. According to the high-pressure X-ray diffraction measurements of Sr0.5La0.5FBiS2, a structural phase transition from tetragonal to monoclinic also occurred at approximately 1.1 GPa. Thus, this phase transition indicates a pressure-induced superconducting-superconducting transition similar to the transition in LaO0.5F0.5BiS2. Bulk superconducting phases in Sr0.5RE0.5FBiS2 induced by the external hydrostatic pressure effect are expected to be useful for evaluating the mechanisms of superconductivity in BiCh2-based superconductors.