RIKEN Center for Emergent Matter Science (CEMS), Wako, Saitama 351-0198, Japan.
Institut für Festkörperforschung, Leibniz IFW-Dresden, 01069 Dresden, Germany.
Phys Rev Lett. 2023 Jan 20;130(3):036801. doi: 10.1103/PhysRevLett.130.036801.
Orbital degrees of freedom mediating an interaction between spin and lattice were predicted to raise strong magnetoelectric effect, i.e., to realize an efficient coupling between magnetic and ferroelectric orders. However, the effect of orbital fluctuations has been considered only in a few magnetoelectric materials, as orbital-degeneracy driven Jahn-Teller effect rarely couples to polarization. Here, we explore the spin-lattice coupling in multiferroic Swedenborgites with mixed valence and Jahn-Teller active transition metal ions on a stacked triangular and Kagome lattice using infrared and dielectric spectroscopy. On one hand, in CaBaM_{4}O_{7} (M=Co, Fe), we observe a strong magnetic-order-induced shift in the phonon frequencies and a corresponding large change in the dielectric response. Remarkably, as an unusual manifestation of the spin-phonon coupling, the spin fluctuations reduce the phonon lifetime by one order of magnitude at the magnetic phase transitions. On the other hand, lattice vibrations, dielectric response, and electric polarization show no variation at the Néel temperature of CaBaFe_{2}Co_{2}O_{7}, which is built up by orbital singlet ions. Our results provide a showcase for orbital degrees of freedom enhanced magnetoelectric coupling via the example of Swedenborgites.
据预测,介导自旋和晶格相互作用的轨道自由度将提高强磁电效应,即实现磁有序和铁电有序之间的有效耦合。然而,轨道涨落的影响仅在少数磁电材料中被考虑,因为轨道简并驱动的 Jahn-Teller 效应很少与极化耦合。在这里,我们使用红外和介电光谱研究了堆积三角和 Kagome 晶格上具有混合价态和 Jahn-Teller 活性过渡金属离子的多铁性 Swedenborgites 中的自旋-晶格耦合。一方面,在 CaBaM_4O_7(M=Co,Fe)中,我们观察到磁有序诱导的声子频率移动以及介电响应的相应大变化。值得注意的是,作为自旋-声子耦合的一种不寻常表现,自旋涨落使磁相变处的声子寿命降低了一个数量级。另一方面,晶格振动、介电响应和电极化在 CaBaFe_2Co_2O_7 的奈尔温度处没有变化,该化合物由轨道单重态离子构成。我们的结果通过 Swedenborgites 的例子展示了轨道自由度增强磁电耦合的作用。