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Magnetic phase transitions and magnetic entropy in the XY antiferromagnetic pyrochlores (Er1−xYx)2Ti2O7

机译:XY反铁磁性烧绿石(Er1-xYx)2Ti2O7中的磁性相变和磁性熵

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摘要

We present the results of experimental determination of the heat capacity of the pyrochlore Er2Ti2O7 as a function of temperature (0.35–300 K) and magnetic field (up to 9 T), and for magnetically diluted solid solutions of the general formula (Er1−xYx)2Ti2O7 (x≤0.471). On either doping or increase of magnetic field, or both, the Néel temperature first shifts to lower temperature until a critical point above which there is no well-defined transition but a Schottky-like anomaly associated with the splitting of the ground state Kramers doublet. By taking into account details of the lattice contribution to the heat capacity, we accurately isolate the magnetic contribution to the heat capacity and hence to the entropy. For pure Er2Ti2O7 and for (Er1−xYx)2Ti2O7, the magnetic entropy as a function of temperature evolves with two plateaus: the first at Rln⁡2, and the other at Rln⁡16. When a very high magnetic field is applied, the first plateau is washed out. The influence of dilution at low values is similar to the increase of magnetic field, as we show by examination of the critical temperature versus critical field curve in reduced terms.
机译:我们提供实验测定烧绿石Er2Ti2O7的热容随温度(0.35–300 K)和磁场(最高达9 T)的函数的结果,以及通式(Er1-xYx)的磁性稀释固溶体的测定结果)2 Ti 2 O 7(x≤0.471)。在掺杂或磁场增加或两者兼而有之时,尼尔温度首先转移到较低温度,直到临界点以上没有明确定义的跃迁,而是与基态克拉默斯双峰分裂相关的类似于肖特基的异常。通过考虑晶格对热容量的贡献的细节,我们可以准确地将磁对热容量的贡献以及熵的影响隔离开来。对于纯Er2Ti2O7和(Er1-xYx)2Ti2O7,随温度变化的磁熵有两个平台:第一平台在Rln⁡2,第二平台在Rln⁡16。当施加非常高的磁场时,第一平台被洗去。在低值处稀释的影响类似于磁场的增加,正如我们通过以减小的术语检查临界温度与临界场曲线所显示的那样。

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