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Research Progress on Ni-Based Antiperovskite Compounds

机译:镍基抗钙钛矿化合物的研究进展

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The superconductivity in antiperovskite compound MgCNi3was discovered in 2001 following the discovery of the superconducting MgB2. In spite of its lower superconducting transition temperature (8 K) than MgB2(39 K), MgCNi3has attracted considerable attention due to its high content of magnetic element Ni and the cubic structure analogous to the perovskite cuprates. After years of extensive investigations both theoretically and experimentally, however, it is still not clear whether the mechanism for superconductivity is conventional or not. The central issue is if and how the ferromagnetic spin fluctuations contribute to the cooper paring. Recently, the experimental results on the single crystals firstly reported in 2007 trend to indicate a conventionals-wave mechanism. Meanwhile many compounds neighboring to MgCNi3were synthesized and the physical properties were investigated, which enriches the physics of the Ni-based antiperovskite compounds and help understand the superconductivity in MgCNi3. In this paper, we summarize the research progress in these two aspects. Moreover, a universal phase diagram of these compounds is presented, which suggests a phonon-mediated mechanism for the superconductivity, as well as a clue for searching new superconductors with the antiperovskite structure. Finally, a few possible scopes for future research are proposed.
机译:在发现超导MgB2之后,于2001年发现了抗钙钛矿化合物MgCNi3中的超导电性。尽管MgCNi3的超导转变温度(8 K)比MgB2(39 K)低,但由于其磁性元素Ni的含量高以及类似于钙钛矿铜酸盐的立方结构,引起了相当大的关注。经过多年的理论和实验研究,目前尚不清楚超导机理是否是常规的。中心问题是铁磁自旋波动是否以及如何促进铜的配对。近来,在2007年首次报道的对单晶的实验结果表明了常规的波机制。同时合成了许多与MgCNi3相邻的化合物并研究了其物理性质,丰富了Ni基抗钙钛矿化合物的物理性质,有助于理解MgCNi3的超导电性。在本文中,我们总结了这两个方面的研究进展。此外,给出了这些化合物的通用相图,表明了声子介导的超导机理,以及寻找具有抗钙钛矿结构的新超导体的线索。最后,提出了一些未来研究的可能范围。

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