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Differences in Chemical Doping Matter: Superconductivity in Ti1-xTaxSe2 but Not in Ti1-xNbxSe2

机译:化学掺杂物质的差异:Ti1-xTaxSe2中的超导性,而不是Ti1-xNbxSe2中的超导性

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摘要

We report that 1T-TiSe2, an archetypical layered transition metal dichalcogenide, becomes superconducting when Ta is substituted for Ti but not when Nb is substituted for Ti. This is unexpected because Nb and Ta should be chemically equivalent electron donors. Superconductivity emerges near x = 0.02 for Ti1-xTaxSe2, while, for Ti1-xNbxSe2, no superconducting transitions are observed above 0.4 K. The equivalent chemical nature of the dopants is confirmed by X-ray photoelectron spectroscopy. ARPES and Raman scattering studies show similarities and differences between the two systems, but the fundamental reasons why the Nb and Ta dopants yield such different behavior are unknown. We present a comparison of the electronic phase diagrams of many electron-doped 1T-TiSe2 systems, showing that they behave quite differently, which may have broad implications in the search for new superconductors. We propose that superconducting Ti0.8Ta0.2Se2 will be suitable for devices and other studies based on exfoliated crystal flakes.
机译:我们报告说,当Ta代替Ti而不是Nb代替Ti时,典型的分层过渡金属二卤化钨1T-TiSe2变得超导。这是出乎意料的,因为Nb和Ta应该是化学等效的电子供体。对于Ti1-xTaxSe2,超导出现在x = 0.02附近,而对于Ti1-xNbxSe2,在0.4 K以上没有观察到超导转变。通过X射线光电子能谱确认了掺杂剂的等效化学性质。 ARPES和拉曼散射研究显示了两种体系之间的异同,但是Nb和Ta掺杂剂产生这种不同行为的根本原因尚不清楚。我们比较了许多掺杂电子的1T-TiSe2系统的电子相图,表明它们的行为截然不同,这可能在寻找新的超导体时具有广泛的意义。我们建议超导Ti0.8Ta0.2Se2将适用于基于剥落的晶体薄片的器件和其他研究。

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