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Effect of pressure on the electrical resistivity and magnetism in UPdSn

机译:压力对UPdSn中电阻率和磁性的影响

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The electrical resistivity of a UPdSn single crystal exerted to various hydrostatic pressures was measured as a function of temperature and magnetic field. Clear anomalies in the temperature dependence of resistivity along the c-axis mark the magnetic phase transitions between paramagnetic and antiferromagnetic (AF) state at T{sub}N and the AF1←→AF2 transition at T{sub}1. Large negative magnetoresistance effects have been observed not only in the AF state as a result of the metamagnetic transition to canted structure at B{sub}c, but also at temperatures far above T{sub}N The latter result is attributed to the existence of AF correlations or short range AF orderings in the paramagnetic range. The value of T{sub}N increases with increasing applied pressure, whereas T{sub}1 simultaneously decreases. It is also found that B{sub}c decreases with increasing pressure. As a consequence, the stability range of the AF-1 phase expands with applied pressure partially on account of the ground-state AF-2 phase.
机译:测量了施加于各种流体静压力的UPdSn单晶的电阻率随温度和磁场的变化。电阻率沿c轴的温度依赖性的明显异常标志着在T {sub} N处的顺磁和反铁磁(AF)状态之间的磁相变和在T {sub} 1处的AF1←→AF2相变。不仅在AF状态下由于在B {sub} c处向倾斜结构的亚磁性转变,而且在远高于T {sub} N的温度下,也观察到了较大的负磁阻效应。后一结果归因于存在AF相关性或顺磁性范围内的短距离AF排序。 T {sub} N的值随施加压力的增加而增加,而T {sub} 1同时减小。还发现,B {sub} c随着压力的增加而减小。结果,部分由于基态AF-2相,AF-1相的稳定性范围随施加的压力而扩大。

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