论文标题
抗铁磁绝缘LAMNO3/PRMNO3/CAMNO3 Tricolor SuperAltatice的电子相分离的纳米网络
Electronically phase separated nano-network in antiferromagnetic insulating LaMnO3/PrMnO3/CaMnO3 tricolor superlattice
论文作者
论文摘要
密切相关的材料通常表现出电子相分离(EPS)现象,其域模式本质上是随机的。在微观尺度上控制电子相的空间排列的能力非常需要定制其宏观特性和/或设计新型电子设备。在这里,我们报告了在SRTIO3(STO)(001)底物上生长的单原子LAMNO3/CAMNO3/PRMNO3超级晶格中EPS纳米级网络的形成,该超级晶格已知,该底物已知具有抗铁磁(AFM)绝缘态。 EPS纳米网络是由于低温下基础STO底物的结构结构域形成而触发的内部应变弛豫的结果。在温度循环时可以复制相同的纳米级网络模式,从而使我们能够采用不同的局部成像技术直接比较单个EPS域的磁性和传输状态。我们的结果证实了铁磁铁矿中铁磁(AFM)与金属(绝缘)状态之间的一对一对应关系。这也代表了从被动地表征强相关系统中的EP到主动参与其操纵的范式转变的重要一步。
Strongly correlated materials often exhibit an electronic phase separation (EPS) phenomena whose domain pattern is random in nature. The ability to control the spatial arrangement of the electronic phases at microscopic scales is highly desirable for tailoring their macroscopic properties and/or designing novel electronic devices. Here we report the formation of EPS nanoscale network in a mono-atomically stacked LaMnO3/CaMnO3/PrMnO3 superlattice grown on SrTiO3 (STO) (001) substrate, which is known to have an antiferromagnetic (AFM) insulating ground state. The EPS nano-network is a consequence of an internal strain relaxation triggered by the structural domain formation of the underlying STO substrate at low temperatures. The same nanoscale network pattern can be reproduced upon temperature cycling allowing us to employ different local imaging techniques to directly compare the magnetic and transport state of a single EPS domain. Our results confirm the one-to-one correspondence between ferromagnetic (AFM) to metallic (insulating) state in manganite. It also represents a significant step in a paradigm shift from passively characterizing EPS in strongly correlated systems to actively engaging in its manipulation.