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首页> 外文期刊>Phase Transitions >Spin coupling and magnetic field effects on the finite-size free energy and its non-extensivity for 1-D Ising model with nearest and next-nearest neighbor interactions in nanosystem
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Spin coupling and magnetic field effects on the finite-size free energy and its non-extensivity for 1-D Ising model with nearest and next-nearest neighbor interactions in nanosystem

机译:自旋耦合和磁场对有限尺寸自由能及其在纳米系统中具有最近和次近邻相互作用的一维伊辛模型的非扩展性的影响

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摘要

The effects of second-neighbor spin coupling interactions and a magnetic field are investigated on the free energies of a finite-size 1-D Ising model. For both ferromagnetic of nearest neighbor (NN) and next-nearest neighbor (NNN) spin coupling interactions, the finite-size free energy first increases and then approaches a constant value for any size of the spin chain. In contrast, when NNN and NN spin coupling interactions are antiferromagnetic and ferromagnetic, respectively, the finite-size free energy gradually decreases by increasing the competition factor and eventually vanishes for large values of it. When a magnetic field is applied, the finite-size free energy decreases with respect to the case of zero magnetic fields for both ferromagnetic and antiferromagnetic spin coupling interactions. Deviation of free energy per size for finite-size systems relative to the infinite system increases when the spin coupling interactions as well as the f parameter (the ratio of the magnetic field to NN spin coupling interaction) increase.
机译:研究了第二邻居自旋耦合相互作用和磁场对有限尺寸的一维伊辛模型的自由能的影响。对于最近邻居(NN)和下一个最近邻居(NNN)的铁磁自旋耦合相互作用,有限大小的自由能首先增加,然后对于任何大小的自旋链都接近一个恒定值。相反,当NNN和NN自旋耦合相互作用分别为反铁磁性和铁磁性时,有限尺寸的自由能会通过增加竞争因子而逐渐减小,并最终随着较大的竞争因子而消失。当施加磁场时,对于铁磁和反铁磁自旋耦合相互作用,相对于零磁场而言,有限尺寸的自由能会降低。当自旋耦合作用以及f参数(磁场与NN自旋耦合作用之比)增加时,有限尺寸系统相对于无限系统的每尺寸自由能偏差就会增加。

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