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Electrical and Thermal Transport Properties of Layered Superconducting Ca10(Pt4As8)((Fe0.86Pt0.14)2As2)5 Single Crystal

机译:层状超导Ca10(Pt4As8)((Fe0.86Pt0.14)2As2)5单晶的电和热输运性质

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摘要

We have synthesized single crystals of iron-based superconducting Ca10(Pt4As8)((Fe0.86Pt0.14)2As2)5 and performed extensive measurements on their transport properties. A remarkable difference in the behavior and a large anisotropy between in-plane and out-of-plane resistivity was observed. Disorder could explain the in-plane square-root temperature dependence resistivity, and interlayer incoherent scattering may contribute to the out-of-plane transport property. Along the ab plane, the estimated value of the coherence length is 15.5 Å. From measurements of the upper critical magnetic field Hc2 (T ≥ 20 K), we estimate Hc2(0) = 313 T. Thermal conductivity for Ca10(Pt4As8)((Fe0.86Pt0.14)2As2)5 is relatively small, which can be accounted for by the disorder in the crystal and the low-charge carrier density as verified by the Hall effect.
机译:我们已经合成了铁基超导Ca10(Pt4As8)((Fe0.86Pt0.14)2As2)5单晶,并对它们的传输性能进行了广泛的测量。在平面内和平面外电阻率之间观察到行为上的显着差异以及较大的各向异性。紊乱可以解释面内平方根的温度依赖性电阻率,而层间非相干散射则可能有助于面外传输特性。沿ab平面,相干长度的估计值为15.5Å。通过对上临界磁场Hc2(T≥20 K)的测量,我们估计Hc2(0)= 313T。Ca10(Pt4As8)((Fe0.86Pt0.14)2As 2 5 相对较小,这可以由晶体中的无序现象和霍尔效应证明的低电荷载流子密度来解释。

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