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首页> 外文期刊>Journal of Applied Physics >Three-dimensional superconductivity in nominal composition Fe1.03Se with Tc zero up to 10.9 K induced by internal strain
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Three-dimensional superconductivity in nominal composition Fe1.03Se with Tc zero up to 10.9 K induced by internal strain

机译:内部应变在名义成分为Fe1.03Se且Tc为零至10.9 K时具有三维超导性

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摘要

Iron selenide with the nominal composition Fe1.03Se was synthesized by a self-flux solution method which shows a zero resistance temperature up to 10.9 K and a Tconset (90% ρn, ρn: normal state resistivity) up to 13.3 K. The residual resistivity ratio RRR=R(300 K)/R0=12. Scanning electron microscopy-EDX study shows that the composition of as grown sample is near stoichiometric FeSe. The decrease in superconducting transition temperature by heat treatment indicates that internal crystallographic strain which plays the same effect as external pressure is the origin of its high Tc. The fluctuation conductivity was studied which could be well described by three-dimensional (3D) Aslamazov–Larkin power law. The estimated value of coherence length ξc=9.2 Å is larger than the distance between conducting layers (∼6.0 Å), indicating the 3D nature of superconductivity in this compound.
机译:通过自熔溶液法合成标称成分为Fe1.03Se的硒化铁,其零电阻温度最高为10.9 K,Tconset(90%ρn,ρn:常态电阻率)最高为13.3K。残余电阻率比率RRR = R(300 K)/ R0 = 12。扫描电子显微镜-EDX研究表明,所生长样品的组成接近化学计量的FeSe。通过热处理降低超导转变温度表明,与外部压力具有相同作用的内部结晶应变是其高Tc的来源。对波动电导率进行了研究,可以用三维(3D)Aslamazov–Larkin幂定律很好地描述。相干长度ξc= 9.2Å的估计值大于导电层之间的距离(〜6.0Å),表明该化合物具有超导性的3D性质。

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