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Magnetic hysteresis, compensation behaviors, and phase diagrams of bilayer honeycomb lattices
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作者 ersin kantar 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第10期453-459,共7页
Magnetic behaviors of the Ising system with bilayer honeycomb lattice(BHL) structure are studied by using the effective-field theory(EFT) with correlations. The effects of the interaction parameters on the magneti... Magnetic behaviors of the Ising system with bilayer honeycomb lattice(BHL) structure are studied by using the effective-field theory(EFT) with correlations. The effects of the interaction parameters on the magnetic properties of the system such as the hysteresis and compensation behaviors as well as phase diagrams are investigated. Moreover, when the hysteresis behaviors of the system are examined, single and double hysteresis loops are observed for various values of the interaction parameters. We obtain the L-, Q-, P-, and S-type compensation behaviors in the system. We also observe that the phase diagrams only exhibit the second-order phase transition. Hence, the system does not show the tricritical point(TCP). 展开更多
关键词 bilayer honeycomb lattices effective-field theory magnetic hysteresis compensation behavior phase diagram
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An effective-field theory study of hexagonal Ising nanowire: Thermal and magnetic properties
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作者 Yusuf Kocakaplan ersin kantar 《Chinese Physics B》 SCIE EI CAS CSCD 2014年第4期465-471,共7页
By means of the effective-field theory (EFT) with correlations, the thermodynamic and magnetic quantities (such as magnetization, susceptibility, internal energy, specific heat, free energy, hysteresis curves, and ... By means of the effective-field theory (EFT) with correlations, the thermodynamic and magnetic quantities (such as magnetization, susceptibility, internal energy, specific heat, free energy, hysteresis curves, and compensation behaviors) of the spin-l/2 hexagonal Ising nanowire (HIN) system with core/shell structure have been presented. The hysteresis curves are obtained for different values of the system parameters, in both ferromagnetic and antiferromagnetic cases. It has been shown that the system only undergoes a second-order phase transition. Moreover, from the thermal variations of the total magnetization, the five compensation types can be found under certain conditions, namely the Q-, R-, S-, P-, and N-types. 展开更多
关键词 hexagonal Ising nanowire effective-field theory hysteresis curve compensation behavior
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Hexagonal Type Ising Nanowire with Spin-1 Core and Spin-2 Shell Structure
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作者 Mehmet Ertas ersin kantar 《Communications in Theoretical Physics》 SCIE CAS CSCD 2015年第10期401-408,共8页
Thermodynamic properties and phase diagrams of a mixed spin-(1,2) Ising ferrimagnetic system with single ion anisotropy on hexagonal nanowire are studied by using effective-field theory with correlations. The suscepti... Thermodynamic properties and phase diagrams of a mixed spin-(1,2) Ising ferrimagnetic system with single ion anisotropy on hexagonal nanowire are studied by using effective-field theory with correlations. The susceptibility,internal energy and specific heat of the system are numerically examined and some interesting phenomena in these quantities are found. The effect of the Hamiltonian parameters on phase diagrams are examined in detail. Besides second-order phase transition, lines of first-order transition and tricritical points are found. In particular, we found that for some negative values of single-ion anisotropies, there exist first-order phase transitions. 展开更多
关键词 HEXAGONAL ISING NANOWIRE mixed spin-(1 2) effectiv
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