论文标题
具有任意自旋的二进制模型的磁化特性
Magnetocaloric properties of the binary Ising model with arbitrary spin
论文作者
论文摘要
通过使用有效的田间理论确定了由任意自旋值组成的Ising二元合金的磁性特性。为了确定磁化效应在二元合金中的效率,已经计算出针对自旋和浓度的各种值的等温磁熵变化和制冷剂能力的含量。结果表明,通过更改浓度,我们可以调整磁性性能。同样,与极限浓度值相比,中间浓度值可以获得更大的制冷剂能力。
The magnetocaloric properties of the Ising binary alloys composed of arbitrary spin values, have been determined by using effective field theory. For determining the efficiency of the magnetocaloric effect in binary alloy, the quantities of interest such as isothermal magnetic entropy change and refrigerant capacity have been calculated for various values of spin and concentration. It is shown that, by changing the concentration we can tune the magnetocaloric performance. Also, it has been shown that greater refrigerant capacity can be obtained for intermediate concentration values, in comparison with the limiting concentration values.