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Thermal and magnetic phase transition properties of a binary alloy spherical nanoparticle: A Monte Carlo simulation study

机译:二元合金球形纳米粒子的热和磁相变性质:蒙特卡洛模拟研究

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摘要

We have used the Monte Carlo (MC) simulation method with Metropolis algorithm to study the finite temperature phase transition properties of a binary alloy spherical nanoparticle with radius r of the type A_pB_(1-p). The system consists of two different species of magnetic components, namely, A and B with spins σ=1/2 and S=1, respectively. A complete picture of phase diagrams, total magnetizations and susceptibilities in related planes have been presented, and the main roles of the radius of nanoparticle, active concentration value of type-A atoms as well as other system parameters on the thermal and magnetic phase transition features of the considered system have been discussed in detail. Our MC investigations clearly show that it is possible to control the critical characteristic behaviors of the system with the help of adjustable Hamiltonian parameters.
机译:我们已经使用了带有Metropolis算法的蒙特卡罗(MC)模拟方法来研究半径为A_pB_(1-p)的二元合金球形纳米粒子的有限温度相变特性。该系统由两种不同的磁性成分组成,即自旋σ= 1/2和S = 1的A和B。给出了相图,总磁化强度和相关平面中的磁化率的完整图片,并且纳米粒子的半径,A型原子的活性浓度值以及其他系统参数在热和磁相变特征上的主要作用已经详细讨论了所考虑的系统。我们的MC研究清楚地表明,借助可调节的Hamiltonian参数,可以控制系统的关键特性行为。

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