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Magnetic field dependence of low-temperature specific heat in Sr_2RuO_4

机译:Sr_2RuO_4中低温比热的磁场依赖性

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摘要

The magnetic field (H) dependence of the Sommerfeld coefficient γ(H) of the low-temperature specific heat in Sr_2RuO_4 is analyzed by numerically solving the microscopic Eilenberger equation. By taking account of the strong Pauli-paramagnetic effect, we find that γ(H) exhibits a systematic change from a concave function H~(1/2) to a convex function H~α(α> 1) at high fields when the orientation of the magnetic field is varied, explaining experimental results. The magnetization is found to be consistent with this behavior. This implies either singlet pairing or triplet pairing with the d vector locked in the basal plane. Based on this conclusion, we explain other properties of this compound.
机译:通过数值求解微观Eilenberger方程,分析了Sr_2RuO_4中低温比热的Sommerfeld系数γ(H)的磁场(H)依赖性。考虑到强大的保利顺磁效应,我们发现当磁场强度高时,γ(H)呈现出从凹函数H〜(1/2)到凸函数H〜α(α> 1)的系统变化。磁场的方向是变化的,解释了实验结果。发现磁化与此行为一致。这意味着将d向量锁定在基平面中的单重态配对或三重态配对。基于此结论,我们解释了该化合物的其他性质。

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