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SmN and DyN: Effect of the nitrogen to rare earth flux ratio on the structural, transport, and magnetic properties

机译:SMN和Dyn:氮气对结构,运输和磁性的稀土通量比的影响

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摘要

We report on the effect of the nitrogen to rare earth (N2/RE) flux ratio on the structural, transport, and magnetic properties of samarium nitride (SmN) and dysprosium nitride (DyN) thin films. Both materials display a reduced lattice constant when the N2/RE flux ratio decreases, i.e., with increased nitrogen vacancies (VN) concentration. The films show several orders of magnitude increase in the electrical resistivity with increased N2/RE flux ratio. Finally, magnetic measurements on DyN films display a deviation from the free ion moment at low temperature, which is eased in more conductive films. This was interpreted as a further reduction in the quenching of the orbital angular momentum caused by the increased VN concentration. The Curie temperature was also found to increase with VN.
机译:我们向钐氮化物(SMN)和氮化物(DYN)薄膜的结构,运输和磁性特性上的稀土(N2 / RE)通量比的影响报告了氮气对稀土(N2 / RE)通量比。当N2 / RE助熔剂比率降低时,两种材料显示出降低的晶格常数,即,随着氮空位(VN)浓度增加。电影膜显示电阻率的几个数量级,随着N2 / RE磁通比增加。最后,在Dyn膜上的磁测量显示在低温下的自由离子片刻中的偏差,在更大的导电膜中缓释。这被解释为进一步减少由增加的VN浓度增加引起的轨道角动量的猝灭。还发现静脉温度与VN增加。

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