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Critical phenomena at the 140 and 200 K magnetic phase transitions in BiFeO3

机译:BiFeO3中140和200 K磁性相变的临界现象

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We have measured the magnon Raman cross-sections for bismuth ferrite as a function of temperature near the newly discovered magnetic phase transitions near T-2 = 140.3 +/- 0.2 K and T-1 = 201.0 +/- 0.8 K (Singh et al 2008 J. Phys.: Condens. Matter 20 252203) and evaluate the critical exponents (alpha = 0.05 and alpha' = 0.09) characterizing that at 140.3 K and (alpha = 0.06 and alpha' = 0.13) that at 201.0 K. These are 1, and hence the data fit a logarithmic divergence about as well. The occurrence of divergences in the electric susceptibility proportional to the specific heat anomaly in non-ferroelectric transitions due to piezoelectric coupling was first reported by Kizhaev et al (1986 JETP Lett. 43 445); in the present paper we apply an analogous theory to magnetoelastic coupling at magnetic transitions. This is an application of the basic Pippard relationship between susceptibilities and specific heat (Pippard 1956 Phil. Mag. 1 473) to a magnetoelastic system. The observations are related to the mechanical loss anomalies observed at the same temperatures (Redfern et al 2008 Preprint cond-mat). Our results support the distorted spin cycloid model of Zalesskii et al (2003 Phys. Solid State 45 141) and not the earlier model of Sosnowska et al (1982 J. Phys. C: Solid State Phys. 15 4835).
机译:我们已经测量了新发现的磁相变附近T-2 = 140.3 +/- 0.2 K和T-1 = 201.0 +/- 0.8 K附近的铋铁氧体的磁振拉曼截面随温度的变化(Singh等人2008 J. Phys .: Condens。Matter 20 252203)并评估了临界指数(alpha = 0.05和alpha'= 0.09),表征了在140.3 K时和(alpha = 0.06并且alpha'= 0.13)在201.0 K时的特征。 1,因此数据也适合于对数差异。 Kizhaev等人(1986 JETP Lett。43 445)首先报道了电化率发散与非铁电跃迁中比热异常成正比的现象。在本文中,我们将类似理论应用于磁跃迁处的磁弹性耦合。这是磁化率和磁化率之间的基本Pippard关系的应用(Pippard 1956 Phil。Mag。1473)。这些观察结果与在相同温度下观察到的机械损耗异常有关(Redfern等,2008 Preprint cond-mat)。我们的结果支持Zalesskii等人(2003 Phys。Solid State 45 141)的扭曲自旋摆线模型,而不支持Sosnowska等人(1982 J. Phys。C:Solid State Phys。15 4835)的早期模型。

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