论文标题

V-NB-MO-AL-GA高渗透合金中的多态性和超导性

Polymorphism and superconductivity in the V-Nb-Mo-Al-Ga high-entropy alloys

论文作者

Wu, Jifeng, Liu, Bin, Cui, Yanwei, Zhu, Qinqing, Xiao, Guorui, Wang, Hangdong, Wu, Siqi, Cao, Guang-han, Ren, Zhi

论文摘要

高渗透合金(HEAS)是当前研究的重点,包括超导性和结构多态性。然而,仅在非耐受性HEAS中观察到多态性跃迁,并且主要在高压下。在这里,我们报告了(v $ _ {0.5} $ nb $ _ {0.5} $)$ _ {3-x} $ mo $ $ $ $ $ _ {x} $ al $ _ al $ _ {0.5} $ a {0.5} $ ga $ _ {0.5} $(0.2 $ q $ leq $ leq leq leq leq 4)发现AS-Cast Hea是单个以身体为中心的立方(BCC)结构,价格为$ x $ = 0.2,而BCC和A15结构的混合物则是更高的$ x $值。退火后,BCC结构对A15的多态性转化经历,所有HEAS都表现出散装的超导性。对于$ x $ = 0.2,而BCC多晶型物的超导不高至1.8 k,而A15多晶型物的超导导向过渡温度$ t _ {\ rm c} $为10.2 k,估计的零温度上级临界场$ b _ {\ rm c2} $ c2 $ c2} $ 20.1(n.1) With increasing Mo content $x$, both $T_{\rm c}$ and $B_{\rm c2}$(0) of the A15-type HEAs decrease, yet the large ratio of $B_{\rm c2}$(0)/$T_{\rm c}$ signifies a disorder-induced enhancement of the upper critical field over a wide $x$ 范围。 $ t _ {\ rm c} $的减少归因于电子特异性热系数和电子偶联强度的下降。此外,$ t _ {\ rm c} $的价电子计数依赖性与二进制A15和其他结构上不同的Hea超导体不同,这表明$ t _ {\ rm c} $可能会通过减少价电子数量而进一步增加。我们的结果不仅揭示了新结构类型的HEE超导体,而且还提供了HEAS中依赖多态性超导性的第一个例子。

High-entropy alloys (HEAs) are at the focus of current research for their diverse properties, including superconductivity and structural polymorphism. However, the polymorphic transition has been observed only in nonsuperconducting HEAs and mostly under high pressure. Here we report the discovery of superconductivity and temperature-driven polymorphism in the (V$_{0.5}$Nb$_{0.5}$)$_{3-x}$Mo$_{x}$Al$_{0.5}$Ga$_{0.5}$ (0.2 $\leq$ $x$ $\leq$ 1.4) HEAs. It is found that the as-cast HEA is of a single body-centered cubic (bcc) structure for $x$ = 0.2 and a mixture of the bcc and A15 structures for higher $x$ values. Upon annealing, the bcc structure undergoes a polymorphic transformation to the A15 one and all HEAs exhibits bulk superconductivity. For $x$ = 0.2, whereas the bcc polymorph is not superconducting down to 1.8 K, the A15 polymorph has a superconducting transition temperature $T_{\rm c}$ of 10.2 K and an estimated zero-temperature upper critical field $B_{\rm c2}$(0) of 20.1 T, both of which are the highest among HEA superconductors. With increasing Mo content $x$, both $T_{\rm c}$ and $B_{\rm c2}$(0) of the A15-type HEAs decrease, yet the large ratio of $B_{\rm c2}$(0)/$T_{\rm c}$ signifies a disorder-induced enhancement of the upper critical field over a wide $x$ range. The decrease in $T_{\rm c}$ is attributed to the decrease in both the electronic specific-heat coefficient and electron-phonon coupling strength. Furthermore, the valence electron count dependence of $T_{\rm c}$, which is different from both the binary A15 and other structurally different HEA superconductors, suggests that $T_{\rm c}$ may be increased further by reducing the number of valence electrons. Our results not only uncover HEA superconductors of a new structural type, but also provide the first example of polymorphism dependent superconductivity in HEAs.

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