首页> 外文期刊>Journal of Physics. Condensed Matter >Percolation limit and stability conditions for the spin glass state in the spinel families based on the two matrices CuCr2S4 and CuCr2Se4 doped by Sb ions
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Percolation limit and stability conditions for the spin glass state in the spinel families based on the two matrices CuCr2S4 and CuCr2Se4 doped by Sb ions

机译:基于Sb离子掺杂的两个矩阵CuCr2S4和CuCr2Se4的尖晶石族旋转玻璃态的渗透极限和稳定性条件

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The percolation limit of the appearance of the spin glass state in the compounds under study has been obtained experimentally. The conditions of stability of the spin glass state have been analyzed here on the basis of the de Almeida-Thouless theory for two spinels differing in the magnetic coupling constants. It turned out that for the higher value of the coupling constant the magnetic field influences the freezing temperature more strongly. Moreover, the greater the coupling constant the broader the range of the possible values of freezing temperatures, in other words the greater the temperature range of the appearance of the spin glass states. It was proved that for the stability of the spin glass state the existence of a small magnetic field is necessary. ;In our case the value of this field is equal to 3.46 x 10(-23) T-G. For the compounds under study the value of the magnetic coupling constant J cannot exceed 130 K for the spin glass state to appear.
机译:已通过实验获得了所研究化合物中自旋玻璃态的渗滤极限。在此,根据de Almeida-Thouless理论,对两个磁耦合常数不同的尖晶石,分析了自旋玻璃态的稳定性条件。结果表明,对于较高的耦合常数,磁场对冻结温度的影响更大。此外,耦合常数越大,冻结温度的可能值的范围越宽,换句话说,自旋玻璃态的出现的温度范围越大。事实证明,为了保持旋转玻璃态的稳定性,必须存在一个小的磁场。 ;在我们的例子中,该字段的值等于3.46 x 10(-23)T-G。对于所研究的化合物,磁耦合常数J的值不能超过130 K才能出现自旋玻璃态。

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