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Superconductivity in palladium-doped 2H-TaS2

机译:钯掺杂的2H-TAS2中的超导性

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A series of PdxTaS2 (0.01 = x = 0.08) samples were prepared and characterized via scanning electron microscope, x-ray powder diffraction, resistivity, magnetization and specific heat measurements. The lattice parameter c associated with the interlayer distance increases monotonically with the Pd content while the parameter a remains essentially constant. The crystal structure of Pd0.08TaS2 has been determined and refined by Rietveld refinement. Pd0.08TaS2 is hexagonal (space group: P31c) with lattice parameters a = 3.3151(1) angstrom, c = 12.1497(9) angstrom. The superconducting transition temperature T-c (0.8 K) of TaS2 can be dramatically enhanced by Pd doping, and the maximum T-c of 4.2 K, about five times the T-c of pure TaS2, is obtained in Pd0.04TaS2. We have determined the superconducting parameters of Pd0.04TaS2, and found that the enhancement of T-c can be attributed to the increase of density of states at the Fermi level. The charge density wave (CDW) of TaS2 is gradually suppressed with Pd doping and disappears in Pd0.06TaS2. This suggests that there is a competitive interplay between superconductivity and CDW in this system.
机译:通过扫描电子显微镜,X射线粉末衍射,电阻率,电阻率,磁化和特定热测量,制备一系列PDXTAS2(0.01& x& = 0.08)样品。与层间距离相关联的晶格参数C随着PD内容而单调地增加,而参数A保持基本恒定。通过RIETVELD改进确定并改进PD0.08TAS2的晶体结构。 PD0.08TAS2是六边形(空间组:P31C),具有晶格参数A = 3.3151(1)埃,C = 12.1497(9)埃。通过Pd掺杂可以显着增强TAS2的超导转变温度T-C(0.8k),并且在PD0.04TAS2中获得了4.2K的最大T-C,约5倍的T-C的T-C。我们已经确定了PD0.04TAS2的超导参数,发现T-C的增强可归因于费米水平处的状态的升高。通过PD掺杂逐渐抑制TAS2的电荷密度波(CDW),并在PD0.06TAS2中消失。这表明该系统中的超导和CDW之间存在竞争相互作用。

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