论文标题
D轨道系统中的多极磁性:晶体场水平,八极极顺序和轨道环电流
Multipolar magnetism in d-orbital systems: Crystal field levels, octupolar order, and orbital loop currents
论文作者
论文摘要
带有旋转$ J = 2 $的量子磁铁,在旋转轨道耦合的莫特绝缘子中产生,可能会显示多极订单。我们对两个电子的简单八面体水晶田hamiltonian进行了确切的对角化研究,并结合了自旋轨道耦合(SOC)和相互作用,发现包括$ e_g $ orbitals(包括$ e_g $ orbitals),或者超越旋转旋转的库仑互动量,$ t_ {2g} $ pecter $ necect $ necece cave of take cake of!退化。这可能会导致低洼的非kramer双子携带四极矩和八度极矩,并激发三倍偶极矩,从而加强了我们先前的现象学提议,以稳定在重型金属氧化中铁二十一个极高的稳定性。我们表明,由于非kramer Doublet内的铁分式脉冲有序而引起的自发时间反转对称性破坏会导致电子轨道环电流。由此产生的内部磁场可以潜在地解释从Muon-Spin放松($ $ $ sr)的小领域($ $ $ sr)在立方$ 5D^2 $ 5D^2 $ OSMATE Double perovskites ba $ _2 $ _2 $ _2 $ _6 $ _6 $,ba $ _2 $ _2 $ _2 $ caoso $ _6 $ _6 $ _6 $ _6 $ _2 $ _6 $ _6 $ _6 $ _6 $_66666666666666666666666666666666666666666666666666666666666666666666666。磁性。我们对这些材料的氧NMR实验做出了进一步的预测。我们还研究了相反的水平方案,其中$ j \!= \!2 $多重组将磁性磁力截面和激发的非kramer doublet分开,在这种情况下为磁敏感性呈现了单离子结果,并指出了其与Rhenate Ba $ _2 $ _2 $ _2 $ yreo yreo $ _6 $ _6 $ _6 $ _6 $ _6 $的可能相关性。我们的工作突出了重型过渡金属氧化物的物理学与基于$ f $ - 电子的重型费米化合物之间的紧密联系。
Quantum magnets with spin $J=2$, which arise in spin-orbit coupled Mott insulators, can potentially display multipolar orders. We carry out an exact diagonalization study of a simple octahedral crystal field Hamiltonian for two electrons, incorporating spin-orbit coupling (SOC) and interactions, finding that either explicitly including the $e_g$ orbitals, or going beyond the rotationally invariant Coulomb interaction within the $t_{2g}$ sector, causes a degeneracy breaking of the $J\!=\!2$ level degeneracy. This can lead to a low-lying non-Kramers doublet carrying quadrupolar and octupolar moments and an excited triplet which supports magnetic dipole moments, bolstering our previous phenomenological proposal for the stabilization of ferro-octupolar order in heavy transition metal oxides. We show that the spontaneous time-reversal symmetry breaking due to ferro-octupolar ordering within the non-Kramers doublet leads to electronic orbital loop currents. The resulting internal magnetic fields can potentially explain the small fields inferred from muon-spin relaxation ($μ$SR) experiments on cubic $5d^2$ osmate double perovskites Ba$_2$ZnOsO$_6$, Ba$_2$CaOsO$_6$, and Ba$_2$MgOsO$_6$, which were previously attributed to weak dipolar magnetism. We make further predictions for oxygen NMR experiments on these materials. We also study the reversed level scheme, where the $J\!=\!2$ multiplet splits into a low-lying magnetic triplet and excited non-Kramers doublet, presenting single-ion results for the magnetic susceptibility in this case, and pointing out its possible relevance for the rhenate Ba$_2$YReO$_6$. Our work highlights the intimate connection between the physics of heavy transition metal oxides and that of $f$-electron based heavy fermion compounds.