论文标题

铁电软模式可以触发抗磁相变吗?

Can the Ferroelectric Soft Mode Trigger an Antiferromagnetic Phase Transition?

论文作者

Maia, André, Kadlec, Christelle, Savinov, Maxim, Vilarinho, Rui, Moreira, Joaquim Agostinho, Bovtun, Viktor, Kempa, Martin, Míšek, Martin, Kaštil, Jiří, Prokhorov, Andriy, Maňák, Jan, Belik, Alexei A., Kamba, Stanislav

论文摘要

II型多铁型,其中自旋相互作用会诱导铁电偏振,这对于大型磁电耦合而引起的新设备功能很有趣。我们在Quadruple-perovskite $ \ text {bimn} _ {\ text {3}} \ text {cr} _ {\ cr} _ {\ text {4}}} \ text {o text {o} _ {12} _ {\ text is and and and and and and and and and and and and and and and and and and and and and and and and and and and and and and and and and and and and and and and and in an ant and and and and and in an an an ant and铁电相变。在125 K处的铁电相变的位移性质,其交叉向订单驱动机制,在THZ范围内的极性软声声子和中央模式中证明了阶端机构。介电和式式研究表明,铁电临界温度对应于先前报道的$ \ text {cr}^{\ text {3+}} $ spins的néel温度。在48 K以下观察到铁电偏振的增加,与$ \ text {mn}^{\ text {3+}} $ spins的néel温度相吻合。极化的增加归因于增强的磁电耦合,因为从红外和拉曼光谱中检测到低于48 K的晶体对称性的变化。

Type-II multiferroics, where spin interactions induce a ferroelectric polarization, are interesting for new device functionalities due to large magnetoelectric coupling. We report on a new type of multiferroicity in the quadruple-perovskite $\text{BiMn}_{\text{3}}\text{Cr}_{\text{4}}\text{O}_{\text{12}}$, where an antiferromagnetic phase is induced by the structural change at the ferroelectric phase transition. The displacive nature of the ferroelectric phase transition at 125 K, with a crossover to an order-disorder mechanism, is evidenced by a polar soft phonon in the THz range and a central mode. Dielectric and pyroelectric studies show that the ferroelectric critical temperature corresponds to the previously reported Néel temperature of the $\text{Cr}^{\text{3+}}$ spins. An increase in ferroelectric polarization is observed below 48 K, coinciding with the Néel temperature of the $\text{Mn}^{\text{3+}}$ spins. This increase in polarization is attributed to an enhanced magnetoelectric coupling, as no change in the crystal symmetry below 48 K is detected from infrared and Raman spectra.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源