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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Possible Interface Superconductivity in Rare-earth Doped CaFe2As2 and Undoped CaFe2As2
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APS -APS March Meeting 2017 - Event - Possible Interface Superconductivity in Rare-earth Doped CaFe2As2 and Undoped CaFe2As2

机译:APS -APS 2017年3月会议-活动-稀土掺杂CaFe2As2和未掺杂CaFe2As2中可能的界面超导

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摘要

Interface superconductivity has been proposed as a mechanism that provides continual inspiration and hope as a route to reach HTS/RTS. Difficulties do exist, as most of these proposed materials are artificially designed heterostructure materials and are by nature delicate and easily disturbed by strain and change in the stoichiometry at the interface. The discovery of superconductivity in rare-earth doped CaFe2As2 (Ca122) with Tc up to 49 K [1], brought renewed hope and detailed material studies were systematically carried out on rare-earth (R) doped Ca122 single crystals with R $=$ La, Ce, Pr, and Nd [2,3]. The experimental observations lead us to the conjecture that the Tc enhancement may be related to naturally occurring chemical interfaces associated with defects and thereby provide a new paradigm to find superconductors with higher Tc. Most recently, we discovered interface-induced superconductivity in the undoped Ca122 with a Tc up to extasciitilde 25 K [4], which provides the most direct evidence to date for possible interfacial superconductivity in single crystals and also sheds light on the understanding of the superconductivity in rare-earth doped Ca122. References: [1] B. Lv et al, PNAS (2011). [2] F. Y. Wei et al., Philos. Mag. (2014); [3] L. Z. Deng et al., Phys. Rev. B (2016); [4] K. Zhao et al., PNAS (2016).
机译:已经提出了接口超导性作为一种机制,该机制提供了持续的灵感和希望,以此作为到达HTS / RTS的途径。确实存在困难,因为大多数这些提议的材料是人为设计的异质结构材料,并且本质上是脆弱的,并且容易受到应变和界面化学计量变化的干扰。在Tc高达49 K的稀土掺杂CaFe2As2(Ca122)中发现超导性[1],给人们带来了新的希望,并且系统地对掺R(R)的稀土掺杂Ca122单晶进行了详细的材料研究。 La,Ce,Pr和Nd [2,3]。实验的观察结果使我们推测,Tc的增强可能与与缺陷相关的自然发生的化学界面有关,从而为寻找具有更高Tc的超导体提供了新的范例。最近,我们在未掺杂的Ca122中发现了界面诱导的超导性,其Tc高达25 K [4],这为迄今为止单晶中可能的界面超导性提供了最直接的证据,也为人们对超导性的理解提供了启示。在稀土掺杂的Ca122中。参考文献:[1] B. Lv等人,PNAS(2011)。 [2] F. Y. Wei等人,Philos。魔术师(2014); [3] L. Z. Deng等人,《物理学报》。版本B(2016); [4] K. Zhao等人,PNAS(2016)。

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