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Unabridged phase diagram for single-phased FeSexTe1-x thin films

机译:单相FeSe x Te 1- x 薄膜的未删减相图

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A complete phase diagram and its corresponding physical properties are essential prerequisites to understand the underlying mechanism of iron-based superconductivity. For the structurally simplest 11 (FeSeTe) system, earlier attempts using bulk samples have not been able to do so due to the fabrication difficulties. Here, thin FeSe x Te1- x films with the Se content covering the full range (0 ≤ x ≤ 1) were fabricated by using pulsed laser deposition method. Crystal structure analysis shows that all films retain the tetragonal structure in room temperature. Significantly, the highest superconducting transition temperature ( TC = 20?K) occurs in the newly discovered domain, i.e. , 0.6 ≤ x ≤ 0.8. The single-phased superconducting dome for the full Se doping range is the first of its kind in iron chalcogenide superconductors. Our results present a new avenue to explore novel physics as well as to optimize superconductors.
机译:完整的相图及其相应的物理性质是理解铁基超导性基本机理的必要先决条件。对于结构最简单的11(FeSeTe)系统,由于制造困难,较早使用大量样品的尝试无法做到这一点。在此,采用脉冲激光沉积法制备了硒含量覆盖整个范围(0≤x≤1)的FeSe x Te 1-x 薄膜。晶体结构分析表明,所有薄膜在室温下均保持四方结构。值得注意的是,最高的超导转变温度(T = 20?K)出现在新发现的域中,即0.6≤x≤0.8。全硫掺杂范围的单相超导圆顶是硫属硫化铁超导体中的首例。我们的结果为探索新型物理学以及优化超导体提供了一条新途径。

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