磁性Weyl半金属Co3Sn2S2的磁输运性质

V. Nagpal, P. Kumar, S. Patnaik
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摘要

研究了新发现的磁性Weyl半金属Co3Sn2S2的电阻率和横向磁阻特性。Co3Sn2S2采用固相反应技术合成,结晶成具有空间基团R-3m(166)的三角结构。随着磁场的施加,电阻率随温度的增加而增加,在低温下观察到电阻率平台。在2K和6T处观察到最高的MR ~ 215%,没有饱和迹象。我们发现磁电阻偏离科勒定律,磁电阻随磁场的非线性归因于多带效应。研究了新发现的磁性Weyl半金属Co3Sn2S2的电阻率和横向磁阻特性。Co3Sn2S2采用固相反应技术合成,结晶成具有空间基团R-3m(166)的三角结构。随着磁场的施加,电阻率随温度的增加而增加,在低温下观察到电阻率平台。在2K和6T处观察到最高的MR ~ 215%,没有饱和迹象。我们发现磁电阻偏离科勒定律,磁电阻随磁场的非线性归因于多带效应。
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Magneto-transport properties of magnetic Weyl semimetal Co3Sn2S2
The resistivity and transverse magnetoresistance properties of recently discovered magnetic Weyl semimetal Co3Sn2S2 is studied. Co3Sn2S2 is synthesized using solid state reaction technique and crystallizes in trigonal structure with space group R-3m(166). The temperature dependent resistivity increases with the application of magnetic field and resistivity plateau is observed at low temperatures. A highest MR ∼ 215% at 2K and 6T is observed with no signs of saturation. We find MR deviation from Kohler’s rule and non-linearity of magnetoresistance with magnetic field is assigned to multiband effect.The resistivity and transverse magnetoresistance properties of recently discovered magnetic Weyl semimetal Co3Sn2S2 is studied. Co3Sn2S2 is synthesized using solid state reaction technique and crystallizes in trigonal structure with space group R-3m(166). The temperature dependent resistivity increases with the application of magnetic field and resistivity plateau is observed at low temperatures. A highest MR ∼ 215% at 2K and 6T is observed with no signs of saturation. We find MR deviation from Kohler’s rule and non-linearity of magnetoresistance with magnetic field is assigned to multiband effect.
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