论文标题

正交MG-TI-O超导体的外延稳定

Epitaxial stabilization of an orthorhombic Mg-Ti-O superconductor

论文作者

Ni, Zhuang, Hu, Wei, Zhang, Qinghua, Zhang, Yanmin, Xiong, Peiyu, Li, Qian, Yuan, Jie, Chen, Qihong, Zhu, Beiyi, Zhang, Hua, Dong, Xiaoli, Gu, Lin, Jin, Kui

论文摘要

氧化钛超导体的家族表现出许多有趣的现象,与丘比特和铁皮基/辣椒粉相媲美,因此提供了一个理想的平台来对比研究高温超导体的非常规配对机制。在这里,我们成功地将超导的MG-Ti-O电影存放在MGAL $ _2 $ o $ _4 $ $ _4 $基质中,并通过消融MGTI $ _2 $ o $ $ _4 $ target的底座。特别是,令人惊讶的是,在(011)面向的底物上已经生长了一个意外结构的单晶膜,其中最高的零电阻过渡温度($ t _ {\ mathrm {c} 0} $)为5.0 k。这部电影具有高度降低的mg/ti比和一个正常的ti $ _9 $ o $ _ {10} $ - 喜欢结构(表示为mg:ti $ _9 $ o $ $ _ {10} $),由化学成分和结构的进一步表征证明。这种结构的庞大不稳定,但有利地在MGAL $ _2 $ o $ $ _4 $的(011) - 表面上均匀稳定,这是由于形成的接口处相对较小的应变。在Mg:Ti $ _9 $ o $ o $ $ _ {10} $胶片中观察到的各向同性上层关键领域($ b _ {\ mathrm {c} 2} $)最高可打破Pauli极限的13.7 t。相似性指出了家庭超导性的共同起源,这将为过渡金属化合物中非常规超导性的机制提供宝贵的意见。

The family of titanium oxide superconductors exhibits many intriguing phenomena comparable to cuprates and iron pnictides/chalcogenides, and thus provides an ideal platform to contrastively study the unconventional pairing mechanism of high-temperature superconductors. Here, we successfully deposit superconducting Mg-Ti-O films on MgAl$_2$O$_4$ substrates with three principal orientations by ablating a MgTi$_2$O$_4$ target. Particularly, it is striking to observed that a single-crystalline film of an unintended structure has been grown on the (011)-oriented substrate, with the highest zero resistance transition temperature ($T_{\mathrm{c}0}$) of 5.0 K among them. The film has a highly reduced Mg/Ti ratio and an orthorhombic Ti$_9$O$_{10}$-like structure (denoted as Mg: Ti$_9$O$_{10}$), demonstrated by further characterizations of chemical composition and structure. Such a structure is unstable in bulk but favorable to be epitaxially stabilized on the (011)-surface of MgAl$_2$O$_4$ due to a relatively small strain at the formed interface. An isotropic upper critical field ($B_{\mathrm{c}2}$) up to 13.7 T that breaks the Pauli limit is observed in the Mg: Ti$_9$O$_{10}$ film, analogous to other superconducting titanium oxides. The similarity points to a common origin for the superconductivity in the family, which will provide valuable opinions for the mechanism of unconventional superconductivity in transition metal compounds.

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