Change in the Magnetic Domain Alignment Process at the Onset of a Frustrated Magnetic State in Ferrimagnetic ${hbox{La}}_{2}{hbox{Ni}}({hbox{Ni}}_{1/3}{hbox{Sb}}_{2/3}){hbox{O}}_{6}$ Double Perovskite
首页> 外文期刊>IEEE Transactions on Magnetics >Change in the Magnetic Domain Alignment Process at the Onset of a Frustrated Magnetic State in Ferrimagnetic ${hbox{La}}_{2}{hbox{Ni}}({hbox{Ni}}_{1/3}{hbox{Sb}}_{2/3}){hbox{O}}_{6}$ Double Perovskite
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Change in the Magnetic Domain Alignment Process at the Onset of a Frustrated Magnetic State in Ferrimagnetic ${hbox{La}}_{2}{hbox{Ni}}({hbox{Ni}}_{1/3}{hbox{Sb}}_{2/3}){hbox{O}}_{6}$ Double Perovskite

机译:亚铁磁性$ {hbox {La}} _ {2} {hbox {Ni}}({hbox {Ni}} _ {1/3} {hbox { Sb}} _ {2/3}){hbox {O}} _ {6} $双钙钛矿

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摘要

We have performed a combined study of magnetization hysteresis loops and time dependence of the magnetization in a broad temperature range for the ferrimagnetic ${hbox{La}}_{2}{hbox{Ni}}({hbox{Ni}}_{1/3}{hbox{Sb}}_{2/3}){hbox{O}}_{6}$ double perovskite. This material has a ferrimagnetic order transition at $sim$100 K and at lower temperatures ($sim$ 20 K) shows the signature of a frustrated state due to the presence of two competing magnetic exchange interactions. The temperature dependence of the coercive field shows an important upturn below the point where the frustrated state sets in. The use of hysteresis data, magnetization versus applied magnetic field, together with the magnetization versus time data provides a unique opportunity to distinguish between different scenarios for the low temperature regime. From our analysis, a strong domain wall pinning results in the best scenario for the low temperature regime. For temperatures larger than 20 K, the adequate scenario seems to correspond to a weak domain wall pinning.
机译:我们已经针对亚铁磁性 $ {hbox {La}} _ {2}在宽温度范围内对磁化磁滞回线和磁化强度的时间依赖性进行了综合研究。 } {hbox {Ni}}({hbox {Ni}} _ {1/3} {hbox {Sb}} _ {2/3}){hbox {O}} _ {6} $ 双钙钛矿。该材料在 $ sim $ 100 K和较低温度下具有亚铁磁有序转变( $ sim $ 20 K)显示了由于存在两个相互竞争的磁性交换相互作用而导致受挫状态的特征。矫顽场对温度的依赖性显示出在沮丧状态进入的点以下有一个重要的上升趋势。磁滞数据,磁化强度与施加的磁场的结合以及磁化强度与时间的数据的使用提供了一个独特的机会,可以区分不同的情况低温状态。根据我们的分析,牢固的畴壁钉扎可在低温条件下提供最佳方案。对于大于20 K的温度,适当的情况似乎对应于弱的畴壁钉扎。

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