论文标题
笼子型quasiskutterudite sc5rh6sn18单晶的压力增强超导性
Pressure-enhanced superconductivity in cage-type quasiskutterudite Sc5Rh6Sn18 single crystal
论文作者
论文摘要
SC5RH6SN18具有笼子型quasiskutterudite晶体晶格和II型超导性,具有超导过渡温度TC = 4.99 K的SC5RH6SN18,使用静液压高压(HP)使用电型高压(HP),使用电子传输,同步型X射线衍射(XRD)和RAMAN镜头。我们的数据表明,HP增强了系统的金属性质和TC。发现TC在2.5 GPA时显示出连续增加到5.24 K。 Athough该系统本质上是金属的,在环境压力下进行的拉曼光谱研究表明,在165.97、219.86和230.35 cm-1处存在三种弱模式,主要与嘎嘎作响的原子SC有关。 HP-XRD数据表明,笼子结构是稳定的,没有任何结构相转换,最高为〜7 GPa。晶格参数和体积表现出平滑的减小,而没有任何异常,而在此压力范围内的压力函数。特别是,二阶状态桦木方程可以描述单位细胞体积的压力依赖性很好,产生〜97 GPA的大量模量。 HP拉曼的调查显示,所有三种拉曼模式的线性移动向更高的波数转移,压力增加到〜8 GPa。随着压力增强键重叠,从而诱导更多的电子电荷到系统中,HP-XRD和拉曼结果可能会诱使在此压力范围内随着压力增加而获得更高TC的可能性。
Sc5Rh6Sn18 with a cage-type quasiskutterudite crystal lattice and type II superconductivity, with superconducting transition temperature Tc = 4.99 K, was investigated under hydrostatic high-pressure (HP) using electrical transport, synchrotron X-ray diffraction (XRD) and Raman spectroscopy. Our data show that HP enhance the metallic nature and Tc of the system. Tc is found to show a continuous increase reaching to 5.24 K at 2.5 GPa. Athough the system is metallic in nature, Raman spectroscopy investigations at ambient pressure revealed the presence of three weak modes at 165.97, 219.86 and 230.35 cm-1, mostly related to the rattling atom Sc. The HP-XRD data revealed that the cage structure was stable without any structural phase transition up to ~7 GPa. The lattice parameters and volume exhibited a smooth decrease without any anomalies as a function of pressure in this pressure range. In particular, a second order Birch-Murnaghan equation of state can describe the pressure dependence of the unit cell volume well, yielding a bulk modulus of ~ 97 GPa. HP Raman investigations revealed a linear shift of all the three Raman modes to higher wavenumbers with increasing pressure up to ~8 GPa. As the pressure enhances the bond overlap, thus inducing more electronic charges into the system, HP-XRD and Raman results may indciate the possibility of obtaining higher Tc with increasing pressures in this pressure range.