Phase diagrams on composition-spread FeyTe1-xSex films

[Display omitted] FeyTe1-xSex, an archetypical iron-based high-Tc 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...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:Science bulletin 2022-07, Vol.67 (14), p.1443-1449
Hauptverfasser: Lin, Zefeng, Tu, Sijia, Xu, Juan, Shi, Yujun, Zhu, Beiyi, Dong, Chao, Yuan, Jie, Dong, Xiaoli, Chen, Qihong, Li, Yangmu, Jin, Kui, Zhao, Zhongxian
Format: Artikel
Sprache:eng
Schlagworte:
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:[Display omitted] FeyTe1-xSex, an archetypical iron-based high-Tc 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 FeyTe1-xSex as functions of its chemical compositions since phase separation usually occurs from x ∼ 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 FeyTe1−xSex, achieved by high-throughput film synthesis and characterization techniques. An advanced combinatorial synthesis process enables us to fabricate an epitaxial composition-spread FeyTe1−xSex film encompassing the entire Se content x from 0 to 1 on a single piece of CaF2 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 FeyTe1−xSex. In this way, the evolution of spin patterns is revealed. Our composition-spread FeyTe1−xSex films, overcoming the challenge of phase separation and precise control of chemical compositions, provide an ideal platform for studying the relationship between superconductivity and magnetism.
ISSN:2095-9273
2095-9281
DOI:10.1016/j.scib.2022.06.015