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Consequences of residual-entropy hierarchy violation for behavior of the specific heat capacity in frustrated magnetic systems: An exact theoretical analysis

机译:残余熵层次违反挫折磁系统中特定热容量行为的后果:一个精确的理论分析

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We investigate in detail the influence of the violation of the strict residual-entropy hierarchy among the neighboring ground states of different orders on the low-temperature behavior of the specific heat capacity in the magnetic frustrated systems in the framework of the exactly solvable antiferromagnetic spin-1/2 Ising model with the multisite interaction in the presence of the external magnetic field on the zigzag ladder. The exact expressions for the residual entropies of all ground states of the model are found, and it is shown that when the strength of the multisite interaction is strong enough then the model exhibits a quite interesting specific situation, namely, that there exist neighboring plateau ground states together with the single-point ground state that separates them, such that the magnetization properties of all of them are different but their entropy per site is the same and equal to zero. It is shown that this fact of the violation of the strict residual-entropy hierarchy between neighboring ground states of different orders leads to the reduction of the possible number of peaks that can appear in the low-temperature behavior of the specific heat capacity in the corresponding regions of the model parametric space. In addition, it is also shown that the absence of the strict residual-entropy hierarchy among neighboring ground states of different orders changes qualitatively the behavior of the specific heat capacity as a function of the external magnetic field, namely, that the typical field-induced sharp double-peak structure in the low-temperature behavior of the specific heat capacity, which is directly related to the very existence of the highly macroscopically degenerated single-point ground states, disappears already for relatively large values of the temperature.
机译:我们详细阐述了违反了邻近地面状态不同订单的严格残留熵层次结构对磁扰系统框架框架的磁性沮丧系统中特定热容量的低温行为的影响在Z字形梯子上的外部磁场存在下的多极交互的1/2刻度模型。发现了模型的所有地区的残差熵的确切表达,并显示了当多极交互的强度足够强劲时,该模型表现出相当有趣的特定情况,即存在邻近的高原地面与分隔它们的单点地面状态一起,使得所有这些的磁化性质是不同的,但每个站点的熵是相同的并且等于零。结果表明,这种事实违反了不同订单的邻近地区之间严格的残余熵层次结构导致减少可以在相应的特定热容量的低温行为中出现的可能峰值的峰值模型参数空间的区域。此外,还表明,不同订单的邻近地面状态的严格残留熵层次的严格变化了定性的特定热容量的行为,即外部磁场,即典型的场地诱导的在特定热容量的低温行为中的尖锐双峰结构,与高宏观上退化的单点地面状态直接相关,消失已经用于相对较大的温度值。

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