三元锗化物 ScPdGe 和硅化物 ScPdSi 中的超导性

IF 1.5 4区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY Journal of the Physical Society of Japan Pub Date : 2023-12-22 DOI:10.7566/jpsj.93.023701
Yusaku Shinoda, Yoshihiko Okamoto, Youichi Yamakawa, Hiroshi Takatsu, Hiroshi Kageyama, Daigorou Hirai, Koshi Takenaka
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引用次数: 0

摘要

本文研究了分别以六方 ZrNiAl 和正交 TiNiSi 结构结晶的 ScPdGe 和 ScPdSi 的电子特性。根据使用合成多晶样品测量到的电阻率和热容量数据,发现 ScPdGe 和 ScPdSi 分别在 0.9 和 1.7 K 以下具有体超导性。第一原理计算表明,这两种材料的费米能存在大量的 Sc 3d 和 Pd 4d 电子。通过与几种含有钪和 4d 过渡金属元素的超导体进行比较,讨论了这些材料的电子特性和电子状态。
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Superconductivity in Ternary Germanide ScPdGe and Silicide ScPdSi
The electronic properties of ScPdGe and ScPdSi, crystallizing in the hexagonal ZrNiAl and orthorhombic TiNiSi structures, respectively, are investigated. ScPdGe and ScPdSi are found to show bulk superconductivity below 0.9 and 1.7 K, respectively, based on electrical resistivity and heat capacity data measured using synthesized polycrystalline samples. First-principles calculations indicate the presence of large contributions of Sc 3d and Pd 4d electrons at the Fermi energy in both materials. The electronic properties and electronic states of these materials are discussed in comparison with those of several superconductors containing scandium and a 4d transition metal element.
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来源期刊
CiteScore
3.40
自引率
17.60%
发文量
325
审稿时长
3 months
期刊介绍: The papers published in JPSJ should treat fundamental and novel problems of physics scientifically and logically, and contribute to the development in the understanding of physics. The concrete objects are listed below. Subjects Covered JPSJ covers all the fields of physics including (but not restricted to) Elementary particles and fields Nuclear physics Atomic and Molecular Physics Fluid Dynamics Plasma physics Physics of Condensed Matter Metal, Superconductor, Semiconductor, Magnetic Materials, Dielectric Materials Physics of Nanoscale Materials Optics and Quantum Electronics Physics of Complex Systems Mathematical Physics Chemical physics Biophysics Geophysics Astrophysics.
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