TiZrNb 和 TiZrNbHf 体等摩尔合金中的超导性

IF 0.6 4区 物理与天体物理 Q4 PHYSICS, APPLIED Low Temperature Physics Pub Date : 2024-08-06 DOI:10.1063/10.0027922
Filip Košuth, Johan Cedervall, Gustav Ek, Slavomír Gabáni, Gabriel Pristáš, Matúš Orendáč, Július Bačkai, Oleksandr Onufriienko, Pavol Szabó, Karol Flachbart
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引用次数: 0

摘要

我们制备并研究了 TiZrNb 和 TiZrNbHf 的超导等极中熵合金。我们利用磁感应强度和点接触安德烈耶夫反射(PCAR)光谱测量法研究了它们的基本超导参数,如临界温度 Tc、上临界磁场 Bc2 和超导能隙 Δ 的值。虽然我们的样品具有不同的临界温度,即 TiZrNb 的临界温度为 Tc ∼ 8.2 K,TiZrNbHf 的临界温度为 Tc ∼ 6.3 K,但它们的零温临界磁场具有相同的值 Bc2(0) = 12 T,接近克罗斯顿极限。通过 PCAR 测量,我们观察到所有研究样品的表面都存在降解相。尽管如此,我们仍然能够证明这两个系统的体相都表现出 BCS 弱耦合超导性,2Δ(0)/kBTc ∼ 3.5。
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Superconductivity in TiZrNb and TiZrNbHf bulk equimolar alloys
We have prepared and investigated superconducting equimolar medium-entropy alloys of TiZrNb and TiZrNbHf. Their basic superconducting parameters, as the values of the critical temperature Tc, upper critical magnetic field Bc2 and the superconducting energy gap Δ have been studied with the use of magnetic susceptibility and point-contact Andreev reflection (PCAR) spectroscopy measurements. Although our samples have different critical temperatures, namely Tc ∼ 8.2 K for TiZrNb and Tc ∼ 6.3 K for TiZrNbHf, their zero-temperature critical magnetic field has the same value Bc2(0) = 12 T, from the vicinity of the Clogston limit. We have observed the presence of degraded phases on the surfaces of all the investigated samples using PCAR measurements. Still, we were able to show that the bulk phase in both systems exhibits BCS weakly coupled superconductivity with 2Δ(0)/kBTc ∼ 3.5.
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来源期刊
Low Temperature Physics
Low Temperature Physics 物理-物理:应用
CiteScore
1.20
自引率
25.00%
发文量
138
审稿时长
3 months
期刊介绍: Guided by an international editorial board, Low Temperature Physics (LTP) communicates the results of important experimental and theoretical studies conducted at low temperatures. LTP offers key work in such areas as superconductivity, magnetism, lattice dynamics, quantum liquids and crystals, cryocrystals, low-dimensional and disordered systems, electronic properties of normal metals and alloys, and critical phenomena. The journal publishes original articles on new experimental and theoretical results as well as review articles, brief communications, memoirs, and biographies. Low Temperature Physics, a translation of the copyrighted Journal FIZIKA NIZKIKH TEMPERATUR, is a monthly journal containing English reports of current research in the field of the low temperature physics. The translation began with the 1975 issues. One volume is published annually beginning with the January issues.
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