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首页> 外文期刊>Physical review, B >Pressure-induced collapse of large-moment magnetic order and localized-to-itinerant electronic transition in the host-guest compound [Cs6CI][Fe24Se26]
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Pressure-induced collapse of large-moment magnetic order and localized-to-itinerant electronic transition in the host-guest compound [Cs6CI][Fe24Se26]

机译:宿主化合物[CS6CI] [CS6CI] [FE24SE26]中的压力诱导的大型磁秩序和局部对溜进的电子转换的崩溃和局部到溜进的电子转换

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摘要

The magnetic properties of iron chalcogenides and pnictides have found much interest as magnetic fluctuations are suggested to drive the formation of Cooper pairs in iron-based superconductors. Here, we have studied the pressure dependence of the magnetic and electrical properties of the iron-selenide compound [Cs6Cl] [Fe24Se26] by energy-domain synchrotron Mossbauer spectroscopy up to 17 GPa and by resistivity measurements up to 45 GPa Similar to the binary superconductor Fe1+xSe, the host-guest-type crystal structure of [Cs6Cl] [Fe24Se26] contains edge-sharing FeSe4 units, but its ground state is antiferromagnetically ordered. A complex hyperfine pattern suggests a nontrivial spin structure like a spin spiral with large magnetic moments in the range 2 to 3 mu(B) at ambient pressure. High pressure drastically suppresses the Neel temperature from 220 K at ambient pressure to below 30 K at 12 GPa. Between 5 and 10 GPa the complex magnetic hyperfine pattern collapses and a low-moment magnetic ground state emerges at higher pressures. A concomitant decrease of the resistivity by several orders of magnitude indicates that the electronic system becomes more itinerant. Full metallization occurs near 25 GPa, but no sign of superconductivity down to 1.5 K was found at any pressure. It is suggested that the insulating ground state of [Cs6Cl] [Fe24Se26] corresponds to an orbitally selective Mott phase, which due to an increased bandwidth, is transformed into a Hund's metal state under pressure.
机译:铁硫芥子和铅的磁性具有很大的利益,因为建议在铁基超导体中驱动组合器对的形成。在此,我们研究了铁 - 硒化合物[CS6Cl] [Fe24Se26]的磁性和电性能的压力依赖性通过能量域同步摩西蛋白光谱到高达17GPa,并且通过与二元超导体相似的电阻率测量,电阻率测量值FE1 + XSE,[CS6CL] [FE24SE26]的主机型晶体结构包含边缘共享FESE4单元,但其地位是反式磁通量的。复杂的高血清图案表明,像旋转螺旋一样,在环境压力下在2至3μ(b)的范围内具有大的磁性矩。高压大幅度抑制在12mpa的环境压力下从220k的NEER温度抑制了Neel温度,在12GPa下在30 k以下。在5至10GPa之间,复杂的磁性高血色图案坍塌和低力磁场态在更高的压力下出现。通过几个数量级的电阻率的伴随的降低表明电子系统变得更加流动。完全金属化发生在25GPa附近,但在任何压力下都没有发现超导度下降至1.5k的迹象。建议[CS6CL] [Fe24Se26]的绝缘地面对应于轨道选择性的Mott阶段,其由于带宽增加而导致的带宽,在压力下转换成Hund的金属状态。

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