论文标题
与电荷密度波在CuIR2TE4辣椒剂中硫取代时电荷密度波态的抑制和重新出现相关的超导圆顶
Superconducting dome associated with the suppression and re-emergence of charge density wave states upon sulfur substitution in CuIr2Te4 chalcogenides
论文作者
论文摘要
我们报告了从电荷密度波(CDW) - 含量超导体CUIR2TE4到金属绝缘体过渡(MIT) - 通过化学合金逐渐替代S代替Te的含量cuir2s4。全面检查了掺杂范围的CUIR2TE4-XSX多晶系统的结构和物理特性的演变。 X射线衍射(XRD)的结果暗示在0到0.5之间的Cuir2Te4-XSX在NIAS缺陷的三角结构中结晶,而它适应3.6至4的掺杂范围内的立方尖晶石结构,并且在0.5到3.6中的混合相位是一个混合相。出乎意料的是,电阻率和磁化测量结果表明,TE的小浓度S取代可以抑制CDW的过渡,但它重新出现在X = 0.2左右,并且CDW过渡温度明显增强,因为x在0.2到0.5范围内增加。此外,超导临界温度(TC)首先随着S掺杂含量而增加,然后在达到最大TC = 2.82 K的CUIR2TE3.85S0.15后减小。在尖晶石区域从3.6到4中观察到了与TMI相关的MIT顺序,随着X的增加而增加。最后,组装了该CUIR2TE4-XSX系统的温度与X的丰富电子相图,其中超导圆顶与Cuir2Te4-XSX Chalcogenides硫取代时的CDW以及MIT状态的抑制和重新出现有关。
We report the path from the charge density wave (CDW)-bearing superconductor CuIr2Te4 to the metal insulator transition (MIT)-bearing compound CuIr2S4 by chemical alloying with the gradual substitution of S for Te. The evolution of structural and physical properties of the CuIr2Te4-xSx polycrystalline system with the doping range from 0 to 4 is systemically examined. The X-ray diffraction (XRD) results imply CuIr2Te4-xSx in the range between 0 and 0.5 crystallizes in a NiAs defected trigonal structure, whereas it adapts to the cubic spinel structure in the doping range from 3.6 to 4 and it is a mixed phase in the doping range from 0.5 to 3.6. Unexpectedly, the resistivity and magnetization measurements reveal that small-concentration S substitution for Te can suppress the CDW transition, but it reappears around x = 0.2, and the CDW transition temperature enhances clearly as x augments in the range from 0.2 to 0.5. Besides, the superconducting critical temperature (Tc) first increases with S doping content and then decreases after reaching a maximum Tc = 2.82 K for CuIr2Te3.85S0.15. MIT order has been observed in the spinel region from 3.6 to 4 associated with TMI increasing with x increasing. Finally, the rich electronic phase diagram of temperature versus x for this CuIr2Te4-xSx system is assembled, where the superconducting dome is associated with the suppression and re-emergence of CDW as well as MIT states at the end upon sulfur substitution in the CuIr2Te4-xSx chalcogenides.