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Thermodynamic properties of ferroics described by the transverse Ising model and their applications for CoNb_2O_6

机译:横向读取模型描述的铁义的热力学性质及其康复应用的应用

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摘要

The temperature and transverse field dependence of the entropy and the specific heat of ferroics in the quantum paramagnetic (QPa) state is investigated using the transverse Ising model (TIM) with different spin values within mean field and Gaussian spin fluctuation approximations. A maximum peak of the temperature dependence of the specific heat curves is enhanced in the QPa state due to spin fluctuations. This peak shifts to higher temperature region and its magnitude reduces with increasing transverse field. In addition, the temperature corresponding to this maximum depends linearly on the deviation of the transverse field from its critical value. The obtained specific heat qualitatively agrees with the experimental observation for the quasi-one-dimensional (1D) Ising ferromagnet CoNb2O6 in the QPa phase. It is also shown that the spin-1/2 three dimensional (3D) TIM clearly describes the specific heat of CoNb2O6 in the QPa states near the critical temperature. However, the spin-3/2 3D-TIM is more adequate than the spin-1/2 3D-TIM for describing the thermal behavior of CoNb2O6 in the QPa states at high fields and at elevated temperatures.
机译:使用横向ising模型(Tim)研究了在平均场和高斯自旋波动近似的不同自旋值的横向ising模型(Tim)来研究熵和炉灶特异性的熵和菲尼索的比例。由于旋转波动,在QPA状态下提高了特定热曲线的温度依赖性的最大峰值。该峰值转移到较高的温度区域,并且随着横场的增加,其幅度减小。另外,对应于该最大值的温度根据其临界值线性地依赖于横向场的偏差。所获得的特异性热定性同意QPA相中的准一维(1D)ising铁磁性铁磁性谱2O6的实验观察。还示出了旋转-1 / 2三维(3D)摩擦清楚地描述了QPA状态的突出态在临界温度附近的比例。然而,Spin-3/2 3D-Tim比Spin-1/2 3D-Tim更充分,用于描述在高领域和升高的温度下QPA状态中的Conb2O6的热行为。

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