论文标题

单离子各向异性对沮丧旋转的磁联性特性的影响

Effect of Single-ion Anisotropy on Magnetocaloric Properties of Frustrated Spin-$s$ Ising Nanoclusters

论文作者

Mohylna, Mariia, Žukovič, Milan

论文摘要

通过精确枚举研究了单离子各向异性对所选自旋$ s \ geq 1 $抗铁磁ISING群集的磁笼特性的影响。发现包含单动各向异性参数$ d $可能会导致更复杂的地面行为,这也反映在有限温度下的磁脉电平效应(MCE)中。对于负$ d $(易于平面各向异性),随着$ s $的增加,地面磁化功能作为外场的函数逐渐显示出各种高度的高原数量。除了$ d <d_0 \ leq 0 $的整数$ s $的情况外,第一个磁化高原的高度为非零。随着磁场消失到零,该特性以突然降低温度的形式促进了绝热消灭过程中增强的MCE。在具有较大$ S $和$ d> 0 $(易于轴各向异性)的系统中,冷却速率可以大大提高,尽管其对这些参数的依赖性很大程度上取决于群集的几何形状。从研究的系统中发现,在2CS群集中发现了更有利的观察MCE的条件,由两个转角共享的四面体组成,其实验性实现可以在技术上用于有效的制冷到超低温度。

Effects of a single-ion anisotropy on magnetocaloric properties of selected spin-$s\geq 1$ antiferromagnetic Ising clusters with frustration-inducing triangular geometry are studied by exact enumeration. It is found that inclusion of the single-ion anisotropy parameter $D$ can result in a much more complex ground-state behavior, which is also reflected in a magnetocaloric effect (MCE) at finite temperatures. For negative $D$ (easy-plane anisotropy) with increasing $s$ the ground-state magnetization as a function of the external field gradually shows increasing number of plateaus of various heights. Except for the cases of integer $s$ with $D < D_0 \leq 0$, the first magnetization plateau is of non-zero height. This property facilitates an enhanced MCE in the adiabatic demagnetization process in the form of an abrupt decrease in temperature as the magnetic field vanishes to zero. The cooling rate can be considerably enhanced in the systems with larger $s$ and $D>0$ (easy-axis anisotropy), albeit its dependence on these parameters is strongly dependent on the cluster geometry. From the studied systems more favorable conditions for observing a giant MCE were found in the 2CS cluster, consisting of two corner-sharing tetrahedra, the experimental realization of which could be technologically used for efficient refrigeration to ultra-low temperatures.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源