具有 MnAs 纳米颗粒的狄拉克三维半金属 Cd3As2 的电物理和磁特性研究

L. A. Saypulaeva, N. Melnikova, M. M. Gadzhialiev, A. Tebenkov, A. Babushkin, V. Zakhvalinskii, M. H. Al-Onaizan, A. Ril
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引用次数: 0

摘要

我们报告了由 70% mol.我们报告了在室温和大气压下 180 - 350 K 温度范围内,在带有 "圆锥扁平 "型砧的金刚石砧池中,在高达 50 GPa 的压力下,以及在环形高压池中,在高达 6 GPa 的静水压力下,对一种由 70 % mol.的狄拉克半金属 Cd3As2 和 30 % mol.的铁磁体 MnAs 组成的复合材料进行磁电阻(MR)研究的主要结果。使用甲醇和乙醇以 4:1 的比例混合作为压力传输介质。Cd3As2 + 30 % mol MnAs 复合材料的元素分析表明,Cd3As2 相占据了大部分体积。砷化锰相夹杂物的比例小于 5%。Cd3As2 + MnAs 的特点是 Cd3As2 和 MnAs 相熔体存在一个显著的非混合区域。在所研究的整个巴里克区,随着压力的增加,磁共振呈负值。在 22 - 26 GPa 的巴压区观察到最大的负磁阻。压力进一步增加到最大值时,ΔR/R0(P) 曲线上会出现几个极值,负磁阻不超过 4%。当压力从 50 GPa 释放时,ΔR/R0(P) 的巴氏相关性表现为 MR 符号的反转:在压力约为 40 GPa 时,负 MR 被正 MR 取代,而在约为 20 GPa 时,观察到正 MR 的最大值约为 5.3%。减压时部分分解导致 Cd3As2 的单斜结构出现不稳定迹象。当使用适当的复合材料时,所获得的结果可用于自旋电子学。
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Study of the electrophysical and magnetic properties of a Dirac 3D semimetal Cd3As2 with nanogranules of MnAs
We report on the main results of studying the electrical and magnetoresistance (MR) of a composite material consisting of 70 % mol. Dirac semi-metal Cd3As2 and 30 % mol. ferromagnet MnAs at pressures up to 50 GPa in a diamond anvil cell with a «rounded cone-flat» type anvils, as well as magnetization at hydrostatic pressures up to 6 GPa in a toroid-shaped high-pressure cell, both at room temperature and in the temperature range of 180 – 350 K at atmospheric pressure. A mixture of methanol and ethanol in a ratio of 4:1 was used as a pressure transmitting medium. Elemental analysis of Cd3As2 + 30 % mol MnAs composites showed that much of the volume is occupied by the Cd3As2 phase. The proportion of MnAs phase inclusions is less than 5 %. The feature of Cd3As2 + MnAs is the presence of a significant region of non-mixing of the Cd3As2 and MnAs phase melts. A negative MR was revealed with increasing pressure in the entire studied baric zone. The maximum negative MR is observed in the baric zone of 22 – 26 GPa. Further increase in the pressure up to the maximum level result in the appearance of several extrema on the ΔR/R0(P) curve, with negative MR not exceeding 4 %. Upon pressure release from 50 GPa, the baric dependence of ΔR/R0(P) is characterized by an inversion of the MR sign: at pressures around 40 GPa, a negative MR is replaced by a positive MR, and at around 20 GPa, the maximum value of positive MR of ~5.3 % is observed. Signs of the instability of the monoclinic structure of Cd3As2 resulted from its partial decomposition upon decompression were revealed. The results obtained can be used in spintronics when using appropriate composite materials.
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