论文标题

构图范围的阶段图$ _y $ te $ _ {1-x} $ se $ _x $电影

Phase diagrams on composition-spread Fe$_y$Te$_{1-x}$Se$_x$ films

论文作者

Lin, Zefeng, Tu, Sijia, Xu, Juan, Shi, Yujun, Zhu, Beiyi, Dong, Chao, Yuan, Jie, Dong, Xiaoli, Chen, Qihong, Li, Yangmu, Jin, Kui, Zhao, Zhongxian

论文摘要

fe $ _y $ te $ _ {1-x} $ se $ _x $,这是一种基于铁的基于铁的高温超导体,具有简单但丰富的物理特性,引起了很多关注,因为两个末端的成分$ x = 0 $ x = 0 $和1,展示了反铁磁性和nematicity的互动,是一个理想的互动,是一个理想的互动。但是,迄今为止,显然缺乏的是Fe $ _y $ te $ _ {1-x} $ SE $ _x $作为其化学成分的功能的完整相图,因为相位分离通常是从$ x \ sim 0.6 $ 0.6 $ 0.6 $ 0.6到0.9的散装晶体。此外,对其组成的精细控制在实验上具有挑战性,因为TE和SE都是挥发性元素。在这里,我们建立了一个完整的阶段图$ _y $ te $ _ {1-x} $ se $ _x $,由高通量膜合成和表征技术实现。高级组合综合过程使我们能够制造出外延构图范围pre $ _y $ _y $ _ {1-x} $ se $ _x $ film胶片,涵盖整个se内容$ x $从0到1的CAF $ _2 $ substrate。微区组成分析和X射线衍射分别显示了化学成分和晶格参数的连续调整。微尺度模式技术允许将电运属性映射为相对SE含量的函数,其前所未有的分辨率为0.0074。结合文献中的旋转图案,我们构建了一个详细的相图,该图可以统一fe $ _y $ te $ _ $ _ {1-x} $ se $ _x $ _x $的电子和磁性属性。我们的作品传播fe $ _y $ te $ _ {1-x} $ se $ _x $胶片,克服了相位分离的挑战和对化学成分的精确控制,为研究超导性和磁性之间的关系提供了理想的平台。

Fe$_y$Te$_{1-x}$Se$_x$, an archetypical iron-based high-temperature superconductor with a simple structure but rich physical properties, has attracted lots of attention because the two end compositions, Se content $x = 0$ and 1, exhibit antiferromagnetism and nematicity, respectively, making it an ideal candidate for studying their interactions with superconductivity. However, what is clearly lacking to date is a complete phase diagram of Fe$_y$Te$_{1-x}$Se$_x$ as functions of its chemical compositions since phase separation usually occurs from $x\sim 0.6$ to 0.9 in bulk crystals. Moreover, fine control of its composition is experimentally challenging because both Te and Se are volatile elements. Here we establish a complete phase diagram of Fe$_y$Te$_{1-x}$Se$_x$, achieved by high-throughput film synthesis and characterization techniques. An advanced combinatorial synthesis process enables us to fabricate an epitaxial composition-spread Fe$_y$Te$_{1-x}$Se$_x$ film encompassing the entire Se content $x$ from 0 to 1 on a single piece of CaF$_2$ substrate. The micro-region composition analysis and X-ray diffraction show a successful continuous tuning of chemical compositions and lattice parameters, respectively. The micro-scale pattern technique allows the mapping of electrical transport properties as a function of relative Se content with an unprecedented resolution of 0.0074. Combining with the spin patterns in literature, we build a detailed phase diagram that can unify the electronic and magnetic properties of Fe$_y$Te$_{1-x}$Se$_x$. Our composition-spread Fe$_y$Te$_{1-x}$Se$_x$ films, overcoming the challenges of phase separation and precise control of chemical compositions, provide an ideal platform for studying the relationship between superconductivity and magnetism.

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