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Strain-driven magnetic phase transitions from an antiferromagnetic to a ferromagnetic state in perovskite RMnO_3 films

机译:钙钛矿RMnO_3薄膜中应变驱动的磁相从反铁磁状态转变为铁磁状态

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摘要

The effects of epitaxial strain on the structural, electronic, and magnetic properties in perovskite RMnO3 (R = La-Lu) films grown on (001) and (110) SrTiO3 substrates have been studied by density functional theory calculations. We demonstrate that the epitaxial strain causes the magnetic phase transitions from antiferromagnetic to ferromagnetic in most of the RMnO3 films, except those with smaller R ions. These transitions can be attributed to the suppression of Q(3)-type Jahn-Teller distortion caused by epitaxial strain, which significantly enhances the ferromagnetism in the nearest-neighbor exchange interactions. The strain gradient resulting from the strain relaxation provides the possibility to realize the coexistence of ferroelectricity and ferromagnetism, and a magnetoelectric coupling interface can be formed at the phase boundary between ferromagnetic and ferroelectric antiferromagnetic phases. Our results not only explain the observed ferromagnetism and the coexistence of multiple magnetic orders but also shed light on how to achieve the coexistence and coupling between ferroelectricity and ferromagnetism in RMnO3 films.
机译:通过密度泛函理论计算研究了外延应变对在(001)和(110)SrTiO3衬底上生长的钙钛矿RMnO3(R = La-Lu)膜的结构,电子和磁性的影响。我们证明,在大多数RMnO3薄膜中,除了具有较小R离子的那些薄膜外延应变会导致从反铁磁性到铁磁性的磁性相变。这些转变可以归因于外延应变引起的Q(3)型Jahn-Teller畸变的抑制,这显着增强了最近邻居交换相互作用中的铁磁性。由应变弛豫产生的应变梯度提供了实现铁电和铁磁的共存的可能性,并且可以在铁磁和铁电反铁磁相之间的相界处形成磁电耦合界面。我们的结果不仅解释了观察到的铁磁性和多种磁阶的共存,而且阐明了如何在RMnO3薄膜中实现铁电与铁磁的共存和耦合。

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