论文标题

间隙碳掺杂的ZR5PT3中完全传播的超导状态

Fully-gapped superconducting state in interstitial-carbon-doped Zr5Pt3

论文作者

Shang, T., Philippe, J., Zhu, X. Y., Zhang, H., Yu, B. C., Zhen, Z. X., Ott, H. -R., Kitagawa, J., Shiroka, T.

论文摘要

我们报告了Zr $ _5 $ pt $ _3 $ c $ _x $ superconductors的全面研究,其间隙碳在0到0.3之间。在宏观的水平上,通过电抗性,磁性敏感性和特定的热量测量结果研究了$ T_C $ 4.5至6.3 K的超导性。上临界场$μ_0H_\ MATHRM {C2} $ $ \ SIM $ 7 T主要取决于应用磁场中电阻率的测量。通过Muon-Spin旋转和松弛($ $ $ SR)和核磁共振(NMR)技术研究了微观电子特性。在正常状态下,NMR弛豫数据表明,通过频段结构计算证实,几乎是理想的金属行为,这表明在费米水平上的状态相对较高,以ZR 4 $ d $ orbitals为主。通过横向场$μ$ SR获得的低温超流体密度表明,在Zr $ _5 $ _5 $ _5 $ _3 $和Zr $ _5 $ _3 $ _3 $ _3 $ _3 $ _3 $ _ {0.3} $中,具有完全传播的超导状态$λ_0$ = 333和493 nm。 NMR放松率低于$ T_C $的指数依赖性进一步支持了无节性的超导性。从零景$μ$ $ SR的测量确定的超导性发作以下的自发磁场的缺乏证实了在Zr $ _5 $ _5 $ pt $ _3 $ _3 $ c $ c $ _x $的超导状态下保存的时间反转对称性。与先前的研究相反,我们的$ $ $ $ SR和NMR结果表明,Zr $ _5 $ pt $ _3 $ _3 $ c $ c $ _x $ family中的常规超导率,独立于C内容。

We report a comprehensive study of the Zr$_5$Pt$_3$C$_x$ superconductors, with interstitial carbon comprised between 0 and 0.3. At a macroscopic level, their superconductivity, with $T_c$ ranging from 4.5 to 6.3 K, was investigated via electrical-resistivity-, magnetic-susceptibility-, and specific-heat measurements. The upper critical fields $μ_0H_\mathrm{c2}$ $\sim$ 7 T were determined mostly from measurements of the electrical resistivity in applied magnetic fields. The microscopic electronic properties were investigated by means of muon-spin rotation and relaxation ($μ$SR) and nuclear magnetic resonance (NMR) techniques. In the normal state, NMR relaxation data indicate an almost ideal metallic behavior, confirmed by band-structure calculations, which suggest a relatively high electronic density of states at the Fermi level, dominated by the Zr 4$d$ orbitals. The low-temperature superfluid density, obtained via transverse-field $μ$SR, suggests a fully-gapped superconducting state in Zr$_5$Pt$_3$ and Zr$_5$Pt$_3$C$_{0.3}$, with a zero-temperature gap $Δ_0$ = 1.20 and 0.60 meV and a magnetic penetration depth $λ_0$ = 333 and 493 nm, respectively. The exponential dependence of the NMR relaxation rates below $T_c$ further supports a nodeless superconductivity. The absence of spontaneous magnetic fields below the onset of superconductivity, as determined from zero-field $μ$SR measurements, confirms a preserved time-reversal symmetry in the superconducting state of Zr$_5$Pt$_3$C$_x$. In contrast to a previous study, our $μ$SR and NMR results suggest a conventional superconductivity in the Zr$_5$Pt$_3$C$_x$ family, independent of the C content.

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