论文标题
sr $ _2 $ iro $ _4 $/sr $ _3 $ ir $ _2 $ o $ _7 $ superlattice for Model 2D Quantum Heisenberg AntiferRomagnet
Sr$_2$IrO$_4$/Sr$_3$Ir$_2$O$_7$ superlattice for a model 2D quantum Heisenberg antiferromagnet
论文作者
论文摘要
旋转轨道纠缠的伪赋像有望根据晶格和粘结几何形状,从海森贝格抗fiferromagnet到基塔夫旋转液体的广泛异国情调,但许多宿主材料却遭受了晶格扭曲和部分偏离理想的型号,并且在一定程度上偏离了理想的型号,而在本质上,pseud pseudpseudpseudpseudpseplate cou couticplation lats-latch coution lats lats latch couticplation。在这里,我们报告了一个磁性超晶格的合成,该磁力超晶格包括单个($ n $ = 1)和ruddlesden-popper系列的双($ n $ = 2)层成员iridates sr $ _ {n+1} $ _ {n} $ _ {n} $ _ {扫描透射电子显微镜,谐振弹性和非弹性X射线散射,第三个谐波生成测量和拉曼光谱。超级晶格没有针对父阶段报道的结构畸变,并且具有更高的点组对称性,同时保留了从父相遗传的磁性和伪替素动力学,具有两个具有两个对称性差顺序的磁性转变。我们推断出较弱的伪静电耦合,从拉曼光谱的分析中将其归因于沮丧的磁弹性耦合。因此,超级晶格在平方晶格上表达了一个近乎理想的旋转一半矩的理想网络。
Spin-orbit entangled pseudospins hold promise for a wide array of exotic magnetism ranging from a Heisenberg antiferromagnet to a Kitaev spin liquid depending on the lattice and bonding geometry, but many of the host materials suffer from lattice distortions and deviate from idealized models in part due to inherent strong pseudospin-lattice coupling. Here, we report on the synthesis of a magnetic superlattice comprising the single ($n$=1) and the double ($n$=2) layer members of the Ruddlesden-Popper series iridates Sr$_{n+1}$Ir$_{n}$O$_{3n+1}$ alternating along the $c$-axis, and provide a comprehensive study of its lattice and magnetic structures using scanning transmission electron microscopy, resonant elastic and inelastic x-ray scattering, third harmonic generation measurements and Raman spectroscopy. The superlattice is free of the structural distortions reported for the parent phases and has a higher point group symmetry, while preserving the magnetic orders and pseudospin dynamics inherited from the parent phases, featuring two magnetic transitions with two symmetry-distinct orders. We infer weaker pseudospin-lattice coupling from the analysis of Raman spectra and attribute it to frustrated magnetic-elastic couplings. Thus, the superlattice expresses a near ideal network of effective spin-one-half moments on a square lattice.