论文标题

双钙钛矿中的旋转轨耦合控制的基态触发A2BIRO6(a = ba,sr; b = lu,sc)

Spin-orbit coupling controlled ground states in the double perovskite iridates A2BIrO6 (A = Ba, Sr; B = Lu, Sc)

论文作者

Aczel, A. A., Chen, Q., Clancy, J. P., Cruz, C. dela, Reig-i-Plessis, D., MacDougall, G. J., Pollock, C. J., Upton, M. H., Williams, T. J., LaManna, N., Carlo, J. P., Beare, J., Luke, G. M., Zhou, H. D.

论文摘要

尽管长期以来人们期望其强烈的自旋轨道耦合会产生$ j = 0 $的电子接地状态,但每种IR $^{5+} $ ion的强烈期望,但使用5 $ d^4 $电子配置的电子配置引起了最近的兴趣。先前研究的主要重点是双重钙钛矿的触发物ba $ _2 $ yiro $ _6 $和sr $ _2 $ yiro $ _6 $,基态的性质(即订购的vs vs nontagentic)仍然有争议。在这里,我们提出中子粉末衍射,高能量荧光检测到的X射线吸收光谱(HERFD-XAS),谐振非弹性X射线散射(RIX),磁敏感性和MUON自旋放松数据在相关相关的双孔孔孔中, ba $ _2 $ sciro $ _6 $,而sr $ _2 $ sciro $ _6 $,使我们能够对该材料家族的电子和磁性有一般的了解。在所有情况下,我们的HERFD-XAS和RIX测量值确定了IR $^{5+} $离子的$ J = 0 $电子接地状态,在Hund的耦合$ j _ {\ rm H} $的值相似的值和旋转轨道耦合常数$λ_ {\ rm rm soc} $。我们的大量敏感性和若恩自旋松弛数据没有发现远距离磁性或自旋冷冻的证据,但是它们确实显示出与外部局部力矩一致的弱磁信号。我们的结果表明,大的$λ_{\ rm soc} $是在5 $ d^4 $ double double perovskite Iridates中实现的电子和磁接地状态背后的关键动力,这与传统智慧非常吻合。

Iridates with the 5$d^4$ electronic configuration have attracted recent interest due to reports of magnetically-ordered ground states despite longstanding expectations that their strong spin-orbit coupling would generate a $J = 0$ electronic ground state for each Ir$^{5+}$ ion. The major focus of prior research has been on the double perovskite iridates Ba$_2$YIrO$_6$ and Sr$_2$YIrO$_6$, where the nature of the ground states (i.e. ordered vs non-magnetic) is still controversial. Here we present neutron powder diffraction, high energy resolution fluorescence detected x-ray absorption spectroscopy (HERFD-XAS), resonant inelastic x-ray scattering (RIXS), magnetic susceptibility, and muon spin relaxation data on the related double perovskite iridates Ba$_2$LuIrO$_6$, Sr$_2$LuIrO$_6$, Ba$_2$ScIrO$_6$, and Sr$_2$ScIrO$_6$ that enable us to gain a general understanding of the electronic and magnetic properties for this family of materials. Our HERFD-XAS and RIXS measurements establish $J = 0$ electronic ground states for the Ir$^{5+}$ ions in all cases, with similar values for Hund's coupling $J_{\rm H}$ and the spin-orbit coupling constant $λ_{\rm SOC}$. Our bulk susceptibility and muon spin relaxation data find no evidence for long-range magnetic order or spin freezing, but they do reveal weak magnetic signals that are consistent with extrinsic local moments. Our results indicate that the large $λ_{\rm SOC}$ is the key driving force behind the electronic and magnetic ground states realized in the 5$d^4$ double perovskite iridates, which agrees well with conventional wisdom.

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