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Tuning stoichiometry and its impact on superconductivity of monolayer and multilayer FeSe on SrTiO3

机译:调整化学计量及其对单层和多层FESE对SRTIO3的影响

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Synthesis of monolayer FeSe on SrTiO3, with greatly enhanced superconductivity compared to bulk FeSe, remains difficult. Lengthy annealing within a certain temperature window is always required to achieve superconducting samples as reported by different groups around the world, but the mechanism of annealing in inducing superconductivity has not been elucidated. We grow FeSe films on SrTiO3 by molecular beam epitaxy and adjust the stoichiometry by depositing additional small amounts of Fe atoms. The monolayer films become superconducting after the Fe deposition without annealing, and show similar superconducting transition temperatures as those of the annealed films in transport measurements. We also demonstrate on the 5-unit-cell films v that the FeSe multilayer films can be reversibly tuned between the nonsuperconducting root 5 x root 5 phase with Fe vacancies and the superconducting 1 x 1 phase. Our results reveal that the anneal process in essence removes Fe vacancies and the additional Fe deposition serves as a more efficient way to achieve superconductivity. This work highlights the significance of stoichiometry in the superconductivity of FeSe thin films and provides an easy path for superconducting samples.
机译:单层FESE上的SrTiO 3,的合成相比散装FESE大大增强超导,仍然很难。在一定的温度范围内长时间退火总是需要为世界各地不同的组报道,以实现超导样品,但在诱导超导退火的机制尚未阐明。我们生长通过分子束外延于钛酸锶FESE膜和调整通过沉积附加的少量Fe原子的化学计量。的单层膜成为未退火铁沉积之后超导,并表现出相似的超导转变温度的那些传输测量退火膜。我们还证明在5个单位电池的膜信息v的FESE多层膜可在非超导根5×5根相为Fe空位和超导1×1相之间可逆地调整。我们的研究结果表明,在本质上是退火工艺去除铁空缺和额外铁沉积作为一种更有效的方式来实现超导。这项工作突出化学计量的FESE薄膜的超导电性的重要意义,并为超导样品一件容易的路径。

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