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Effect of Mn substitution on superconductivity in iron selenide (Li, Fe)OHFeSe single crystals
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作者 Yiyuan Mao Zian Li +12 位作者 Huaxue Zhou Mingwei Ma Ke Chai Shunli Ni Shaobo Liu Jinpeng Tian Yulong Huang Jie Yuan Kui Jin Xiaoli Dong Fang Zhou Jianqi Li ZhongxianZhao 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第7期492-496,共5页
We synthesize a series of Mn substituted (Li, Fe)OHFeSe superconductor single crystals via a modified ion-exchange method, with the Mn concentration z (the atomic ratio of Mn:Se) ranging from 0 to 0.07. The distr... We synthesize a series of Mn substituted (Li, Fe)OHFeSe superconductor single crystals via a modified ion-exchange method, with the Mn concentration z (the atomic ratio of Mn:Se) ranging from 0 to 0.07. The distribution homogeneity of the Mn element incorporated into the lattice of (Li, Fe)OHFeSe is checked by combined measurements of high-angle- annular-dark-field (HAADF) imaging and electron energy-loss spectroscopy (EELS). Interestingly, we find that the superconducting transition temperature Tc and unit cell parameter c of the Mn-doped (Li, Fe)OHFeSe samples display similar V-shaped evolutions with the increasing dopant concentration z. We propose that, with increasing doping level, the Mn dopant first occupies the tetrahedral sites in the (Li, Fe)OH layers before starting to substitute the Fe element in the su- perconducting FeSe layers, which accounts for the V-shaped change in cell parameter c. The observed positive correlation between the Tc and lattice parameter c, regardless of the Mn doping level z, indicates that a larger interlayer separation, or a weaker interlayer coupling, is essential for the high-Tc superconductivity in (Li, Fe)OHFeSe. This agrees with our previous observations on powder, single crystal, and film samples of (Li, Fe)OHFeSe superconductors. 展开更多
关键词 FeSe-based superconductors Mn doping effect correlation between superconductivity and interlayer separation
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基于关联维数的CRTSII型板式无砟轨道层间离缝状态评价 被引量:5
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作者 路宏遥 何越磊 方若望 《铁道科学与工程学报》 EI CAS CSCD 北大核心 2023年第3期745-752,共8页
CRTSII型板式无砟轨道为多层结构体系,层间可靠的黏结是保证高速列车运行安全的前提。在温度荷载的循环作用下,轨道板与砂浆层间出现不协调的温度变形,导致层间离缝等病害的产生与扩展。为对层间离缝状态进行有效监测与科学评估,搭建无... CRTSII型板式无砟轨道为多层结构体系,层间可靠的黏结是保证高速列车运行安全的前提。在温度荷载的循环作用下,轨道板与砂浆层间出现不协调的温度变形,导致层间离缝等病害的产生与扩展。为对层间离缝状态进行有效监测与科学评估,搭建无砟轨道关键参数监测系统,对服役状态下无砟轨道的板温与层间离缝宽度变化进行长期监测。基于非线性系统的混沌理论,对板温与离缝宽度时间序列的混沌性进行识别,并提出应用关联维数的层间离缝状态宏-微观映射关系分析方法。研究结果表明:纵连板式无砟轨道离缝状态与板温密切相关,处于锁定板温附近时,离缝宽度变化时间序列对应的关联维数最大。在微观层面,层间离缝的扩展可分为裂纹萌生、扩展与贯通的循环过程,结合不同阶段关联维数的变化趋势,建议取离缝宽度达到2.0 mm时为维修阈值。在宏观层面,无砟轨道在不同服役阶段即使离缝宽度相同,因层间黏结质量不断劣化,导致隐蔽性离缝深度指标存在较大差异,可结合关联维数的变化对层间离缝实际状态综合评价。研究成果可为无砟轨道维修标准的制定提供参考,科学指导线路养护工作。 展开更多
关键词 无砟轨道 参数监测 关联维数 层间离缝 宏微观分析 科学评价
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