论文标题

CAK的超导率和相图(fe $ _ {1-x} $ Mn $ _ {x} $)$ _ {4} $ as $ _ {4} $

Superconductivity and phase diagrams of CaK(Fe$_{1-x}$Mn$_{x}$)$_{4}$As$_{4}$ single crystals

论文作者

Xu, M., Schmidt, J., Gati, E., Xiang, L., Meier, W. R., Kogan, V. G., Bud'ko, S. L., Canfield, P. C.

论文摘要

cak(fe $ _ {1-x} $ mn $ _ {x} $)$ _ {4} $作为$ _ {4} $系列已以单晶形式合成,以元素分析,热力学和运输测量为特征。这些测量结果表明,超导过渡温度单调降低,最终被抑制以下1.8 k。对于$ x $值大于0.016,可以在热力学和传输测量中检测到磁过渡的签名,在这种测量中,扭结的特征允许确定过渡温度,$ t^*$的替代品会增加,替代品会增加。构建了一个温度分解($ t $ - $ x $)的相图,显示出半径的超导性,其磁过渡温度为$ t^*$,在26 k接近26 K的$ x $ $ \ sim $ 0.017,并缓慢上升到33 k,$ x $ $ $ $ \ sim $ \ sim $ 0.036。特定的热数据用于跟踪特定热量的跳跃,以$ t_c $; cak(fe $ _ {1-x} $ mn $ _x $)$ _ 4 $作为$ _4 $ data不遵循$ t_ {c}^3 $的$δ$$ c_ {p} $的缩放,因为其他许多基于Fe的超导系统都可以。还测量了弹性见度系数,$ 2M_ {66} $和$ M_ {11} -M_ {12} $作为温度的函数。 $ 2M_ {66} $和$ M_ {11} -M_ {12} $在质量上类似于Cak(Fe $ _ {1-x} $ ni $ _x $)$ _ 4 $ as $ _4 $。这可能表明MN替换系统中的磁性顺序可能仍然与CAK(Fe $ _ {1-X} $ ni $ _X $)$ _ 4 $ as $ _4 $相同。 $ h^\ prime_ {c2} $($ t $)/$ t_c $的明显变化,其中$ h^\ prime_ {c2} $($ t $)是d $ h_ {c2} $($ t $)/d $ t $,以$ x $ $ $ 0.015的范围,可能与promppitit faction campection相关。相干长度和伦敦穿透深度也基于$ h_ {c1} $和$ h_ {c2} $数据计算。相干长度作为$ x $的功能还显示了$ x $ = 0.015的更改。

Members of the CaK(Fe$_{1-x}$Mn$_{x}$)$_{4}$As$_{4}$ series have been synthesized in single crystalline form and characterized by elemental analysis, thermodynamic and transport measurements. These measurements show that the superconducting transition temperature decreases monotonically and is finally suppressed below 1.8 K. For $x$-values greater than 0.016, signatures of a magnetic transition can be detected in both thermodynamic and transport measurements in which kink-like features allow for the determination of the transition temperature, $T^*$, that increases as Mn substitution increases. A temperature-composition ($T$-$x$) phase diagram is constructed, revealing a half-dome of superconductivity with the magnetic transition temperature, $T^*$, appearing near 26 K for $x$ $\sim$ 0.017 and rising slowly up to 33 K for $x$ $\sim$ 0.036. Specific heat data are used to track the jump in specific heat at $T_c$; The CaK(Fe$_{1-x}$Mn$_x$)$_4$As$_4$ data does not follow the scaling of $Δ$$C_{p}$ with $T_{c}^3$ as many of the other Fe-based superconducting systems do. Elastoresistivity coefficients, $2m_{66}$ and $m_{11}-m_{12}$, as a function of temperature are also measured. $2m_{66}$ and $m_{11}-m_{12}$ are qualitatively similar to CaK(Fe$_{1-x}$Ni$_x$)$_4$As$_4$. This may indicate that the magnetic order in Mn substituted system may be still the same as CaK(Fe$_{1-x}$Ni$_x$)$_4$As$_4$. A clear change in $H^\prime_{c2}$($T$)/$T_c$, where $H^\prime_{c2}$($T$) is d$H_{c2}$($T$)/d$T$, at $x$ $\sim$ 0.015 is observed and probably is related to change of the Fermi surface due to magnetic order. Coherence lengths and the London penetration depths are also calculated based on $H_{c1}$ and $H_{c2}$ data. Coherence lengths as the function of $x$ also shows the changes near $x$ = 0.015.

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