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Chemical Phase Separation of Superconductive and Ferromagnetic Domains inZnNNi3−xCox

机译:ZnNNi3-xCox中超导和铁磁畴的化学相分离

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摘要

Various ZnNyNi3−xCoxcompounds with differing Co content,x, were synthesized, and their magnetic properties were investigated. Uniform solid solutions could not be obtained at low Co content (x<0.75); instead micrometer-scaled ferromagnetic ZnNyNi0.6Co2.4domains formed embedded within a superconductive ZnNNi3bulk, showing chemical phase separation of superconductive ZnNNi3and ferromagnetic ZnNyNi0.6Co2.4. At intermediate levels of Co concentration (0.75<x<2), this two-phase separation might persist, and the superconductive behavior was strongly suppressed in this composition region. Only at high Co concentration (x>2) the uniform ferromagnetic solid solution ZnNyNi3−xCox(with most likelyy=0.5) formed. The phase separation behavior is intrinsic to the system, reflecting the existence of a miscibility gap in ZnNyNi3−xCoxfor the samples withx<2, and was shown not to be attributable to incomplete synthesis. In the two-phased samples, high-quality granular contact between the superconductor and ferromagnet has been realized, suggesting that the production of useful devices requiring high-quality contacts between superconductors and ferromagnets may be possible by making use of this two-phase situation.
机译:合成了具有不同Co含量x的各种ZnNyNi3-xCox化合物,并研究了它们的磁性。钴含量低(x <0.75)时,无法获得均匀的固溶体。取而代之的是,微米级的铁磁性ZnNyNi0.6Co2.4畴嵌入超导ZnNNi3体中形成,表明超导ZnNNi3和铁磁ZnNyNi0.6Co2.4的化学相分离。在Co浓度的中间水平(0.75 <x <2)下,该两相分离可能持续,并且在该组成区域中超导行为被强烈抑制。仅在高Co浓度(x> 2)时,才会形成均匀的铁磁固溶体ZnNyNi3-xCox(最有可能为0.5)。相分离行为是系统固有的,反映了x <2的样品在ZnNyNi3-xCox中存在混溶间隙,并且表明这不归因于不完全的合成。在两相样品中,已经实现了超导体和铁磁体之间的高质量颗粒接触,这表明利用这种两相情况,可能需要在超导体和铁磁体之间进行高质量接触的有用器件的生产。

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