2019
DOI: 10.1016/j.physe.2018.11.038
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Magnetic and thermodynamic properties of a ferrimagnetic mixed-spin (1/2, 1, 3/2) Ising nanoisland: Monte Carlo study

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Cited by 47 publications
(9 citation statements)
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“…From the figure, we can see that the remaining magnetization and the coercive field decrease gradually as T changes from a lower value to a larger; eventually, the loop vanishes at T = 6.5, corresponding to the critical temperature. Similar phenomena have also been found in the investigations of nanoislands [62,63], graphene-like quantum dots [64], laddertype graphene nanoribbons [65], a graphene monolayer [66] and triple-layer [67] as well as other magnetic nanosystems [68][69][70][71][72].…”
Section: Hysteresis Loopssupporting
confidence: 79%
“…From the figure, we can see that the remaining magnetization and the coercive field decrease gradually as T changes from a lower value to a larger; eventually, the loop vanishes at T = 6.5, corresponding to the critical temperature. Similar phenomena have also been found in the investigations of nanoislands [62,63], graphene-like quantum dots [64], laddertype graphene nanoribbons [65], a graphene monolayer [66] and triple-layer [67] as well as other magnetic nanosystems [68][69][70][71][72].…”
Section: Hysteresis Loopssupporting
confidence: 79%
“…In our previous studies, the magnetic behaviors of various nano-systems have been studied by means of MC simulation, such as the zigzag graphene nanoribbon (GRNs) [43], ferrimagnetic mixed-spin Ising nanoisland [44], nanowires [45], nanotubes [46], graphene-like nanoisland bilayer [47], nanoparticles [48] and so on. However, little attention has been applied to the dynamic magnetic properties of Ising graphene-like monolayer under external oscillating magnetic field.…”
Section: Introductionmentioning
confidence: 99%
“…36–38 Yang et al have investigated the magnetic and thermodynamic properties of a ferromagnetic mixed-spin Ising nanoisland. 39,40 In a recent contribution, Wu et al have also carried out MCS to investigate the influence of the Hamiltonian parameters on the magnetic and thermodynamic quantities in the ferrimagnetic mixed spin Ising nanoisland. 41,42 All these studies show that the Hamiltonian parameters, such as the crystal field, exchange couplings, magnetic field and temperature, play important roles in the magnetic and thermodynamic behaviors of the nanoisland systems.…”
Section: Introductionmentioning
confidence: 99%