论文标题
$ t^{\ prime} $的磁性行为 - 类型欧盟$ _2 $ cuo $ _4 $由Muon Spin Rotation/Releasation测量
Magnetism behavior of $T^{\prime}$-type Eu$_2$CuO$_4$ revealed by muon spin rotation/relaxation measurements
论文作者
论文摘要
我们进行了MUON自旋旋转/放松测量测量,以研究$ t^{\ prime} $ - 类型EU $ _2 $ CUO $ _4 $(ECO)的磁性行为,这是电子掺杂的Cuprate超管剂的母体,以及氧气还原对磁力抗性的影响。在接近(AS)的ECO中,我们阐明了冷却低于$ t_ \ t_ \ mathrm {n1} $(= 265 K)时的磁相关性的发展,以及在$ 150 K和$ t_ \ t_ \ mathrm {n1} $ \ sim $ \ sim $ \ sim $ \ sim $ \ sim $ \ sim $ \ sim $ \ sim $ \ sim $ \ sim $ \ sim tempe范围内的主要波动旋转状态的共存。在进一步冷却后,在$ t_ \ mathrm {n2} = 110 $ k以下观察到均匀的远程磁顺序,该= 110 $ K,接近$ t^{\ prime} $的订购温度为115 k的订购温度 - 类型la $ _2 $ _2 $ cuo $ cuo $ _4 $(lco)[phys phys phys phys。修订版B {\ bf 82},180508(R)(2010)]。对于降低氧气降低的ECO,观察到具有相同$ t_ \ mathrm {n2} $的类似排序序列,但没有部分有序的旋转状态。因此,在较宽的温度范围内的波动旋转状态和$ t_ \ mathrm {n2} $小于n {é} el温度($ t_ \ t_ \ mathrm {n2} \ of t $ t $ -type lco in $ t $ t $ p prime $ rcous的常见特征($ r $ co,$ r $:稀土离子)。从化学缺陷的角度讨论了AS AS AS AS AS AS的部分旋转状态的起源。此外,我们讨论了电子掺杂和修复缺陷在观察到的退火效果中的作用,对$ t^{\ prime} $ - 类型$ r $ co的磁性效果。
We performed muon spin rotation/relaxation measurements to investigate the magnetic behavior of $T^{\prime}$-type Eu$_2$CuO$_4$ (ECO), which is the parent compound of electron-doped cuprate superconductors, and the effects of oxygen-reduction annealing on its magnetism. In as-sintered (AS) ECO, we clarified the development of magnetic correlations upon cooling below $T_\mathrm{N1}$ (= 265 K) as well as the coexistence of a dominant fluctuating spin state and partially ordered spin state in the temperature range between $\sim$150 K and $T_\mathrm{N1}$. Upon further cooling, uniform long-range magnetic order was observed below $T_\mathrm{N2} = 110$ K, which is close to the ordering temperature of 115 K in $T^{\prime}$-type La$_2$CuO$_4$ (LCO) [Phys. Rev. B {\bf 82}, 180508(R) (2010)]. For oxygen-reduction-annealed ECO, a similar ordering sequence with the same $T_\mathrm{N2}$ was observed but without the partially ordered spin state. Therefore, the fluctuating spin state over a wide temperature range and a $T_\mathrm{N2}$ less than the N{é}el temperature ($T_\mathrm{N2} \approx T_\mathrm{N1}$) in $T$-type LCO are common features of the $T^{\prime}$-type parent $R_2$CuO$_4$ ($R$CO, $R$: rare-earth ion). The origin of the partially ordered spin state in AS ECO is discussed from the viewpoint of chemical defect. Furthermore, we discuss the roles of electron doping and repairing defect in the observed effect of annealing on the magnetism of $T^{\prime}$-type $R$CO.