论文标题

首次演示蜂窝晶格中的基塔夫和伊辛极限之间的调整

First demonstration of tuning between the Kitaev and Ising limits in a honeycomb lattice

论文作者

Bahrami, Faranak, Hu, Xiaodong, Du, Yonghua, Lebedev, Oleg I., Wang, Chennan, Luetkens, Hubertus, Fabbris, Gilberto, Graf, Michael J., Haskel, Daniel, Ran, Ying, Tafti, Fazel

论文摘要

最近对新型自旋轨道耦合状态的观察结果对$ 4D/5D $过渡金属系统产生了极大的兴趣。一个典型的例子是$ j _ {\ text {eff}} = \ frac {1} {2} $ state in iration Materials中的状态和$α$ -rucl $ _ {3} $驱动Kitaev Interactions。在这里,通过调整旋转轨道相互作用($λ_ {\ text {soc}} $)与三角形水晶场分裂($Δ_\ text {t} $)之间的竞争,我们将自旋轨道波函数重组成$ = $μ= \ frac {1} $ frac {1} $ conteration in vertions interions tone verives insing sivives diverives ressing。这是通过拓制性反应来完成的,该反应将li $ _ {2} $ rho $ _ {3} $转换为ag $ _ {3} $ _ {3} $ lirh $ _ {2} $ o $ $ $ $ _ {6} $,从而导致增强的trigonal畸变和减少的旋转旋转型和减少的旋转式辅助。使用扰动理论,我们为新的$μ= \ frac {1} {2} $状态提供一个明确的表达式$ j_ \ text {eff} = \ frac {1} {2} $状态在限制$ c $λ_ {\ text {soc}} \ggΔ__\ text {t} $中实现的li $ _ {2} $ rho rho $ $ _ {3} $。地面状态的变化之后,磁性从li $ _ {2} $ rho $ _ {3} $中的6 k旋转玻璃急剧变化为ag $ _ {3} $ lirh $ _ {2} $ _ {2} $ o $ $ $ $ _ {6} $的94 K antiferromagnet。这些结果为在两个限制之间调整材料并创建丰富的磁相图开辟了途径。

Recent observations of novel spin-orbit coupled states have generated tremendous interest in $4d/5d$ transition metal systems. A prime example is the $J_{\text{eff}}=\frac{1}{2}$ state in iridate materials and $α$-RuCl$_{3}$ that drives Kitaev interactions. Here, by tuning the competition between spin-orbit interaction ($λ_{\text{SOC}}$) and trigonal crystal field splitting ($Δ_\text{T}$), we restructure the spin-orbital wave functions into a novel $μ=\frac{1}{2}$ state that drives Ising interactions. This is done via a topochemical reaction that converts Li$_{2}$RhO$_{3}$ to Ag$_{3}$LiRh$_{2}$O$_{6}$, leading to an enhanced trigonal distortion and a diminished spin-orbit coupling in the latter compound. Using perturbation theory, we present an explicit expression for the new $μ=\frac{1}{2}$ state in the limit $Δ_\text{T}\gg λ_{\text{SOC}}$ realized in Ag$_{3}$LiRh$_{2}$O$_{6}$, different from the conventional $J_\text{eff}=\frac{1}{2}$ state in the limit $λ_{\text{SOC}}\gg Δ_\text{T}$ realized in Li$_{2}$RhO$_{3}$. The change of ground state is followed by a dramatic change of magnetism from a 6 K spin-glass in Li$_{2}$RhO$_{3}$ to a 94 K antiferromagnet in Ag$_{3}$LiRh$_{2}$O$_{6}$. These results open a pathway for tuning materials between the two limits and creating a rich magnetic phase diagram.

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