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The ferromagnetic-spin glass transition in PdMn alloys: Symmetry breaking of ferromagnetism and spin glass studied by a multicanonical method

机译:PdMn合金中的铁磁自旋玻璃化转变:多规范方法研究的铁磁和自旋玻璃的对称破坏

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摘要

The magnetism of Pd_(1 - x)Mn_x is investigated theoretically. A localized spin model for Mn spins that interact with short-range antiferromagnetic interactions and long-range ferromagnetic interactions via itinerant d electrons is set up, with no adjustable parameters. A multicanonical Monte Carlo simulation, combined with a procedure of symmetry breaking, is employed to discriminate between the ferromagnetic and spin glass orders. The transition temperature and the low-temperature phase are determined from the temperature variation of the specific heat and the probability distributions of the ferromagnetic order parameter and the spin glass order parameter at different concentrations. The calculation results reveal that only the ferromagnetic phase exists at x < 0.02, that only the spin glass phase exists at x > 0.04, and that the two phases coexist at intermediate concentrations. This result agrees semi-quantitatively with experimental results.
机译:理论上研究了Pd_(1-x)Mn_x的磁性。建立了一个锰自旋的局部自旋模型,该模型通过流动的d电子与短程反铁磁相互作用和长程铁磁相互作用相互作用,没有可调整的参数。采用多规范的蒙特卡洛模拟,并结合对称破坏程序,来区分铁磁和自旋玻璃阶数。根据比热的温度变化以及不同浓度下的铁磁有序参数和自旋玻璃有序参数的概率分布来确定转变温度和低温相。计算结果表明,在x <0.02时仅存在铁磁相,在x> 0.04时仅存在自旋玻璃相,并且这两个相以中等浓度共存。该结果与实验结果半定量地吻合。

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