论文标题
相关的电子金属特性honeycomb luthenate na $ _2 $ ruo $ _3 $
Correlated electron metal properties of the honeycomb ruthenate Na$_2$RuO$_3$
论文作者
论文摘要
我们报告polycrystalline na $ _2 $ ruo $ _3 $的合成和表征,这是一种分层材料,其中ru $^{4+} $($ 4D^4 $配置)形成了蜂窝状晶格。发现最佳合成条件可产生几乎有序的Na $ _2 $ ruo $ _3 $($ c2/c $相),这是从飞行时间中子粉末粉末衍射的改进中评估的。磁化易感性测量结果揭示了与温度无关的Pauli progaragnetism($χ_0\ sim 1.42(2)\ times10^{ - 3} $ emu/mol OE),没有磁性订购至1.5 k的迹象,并且没有动态磁相关性,而动态磁相关性则没有中子的散射光谱散射。内在的敏感性($χ_0$)以及$γ= 11.7(2)$ MJ/ru mol K $^2 $从热容量测量中估计的$γ= 11.7(2),可增强威尔逊比率$ r_w \ r_w \ r_w \ \ \ \ \ 8.9(1)$,表明该磁相关性可能存在于此材料中。虽然压力颗粒上的传输测量表现出非金属行为,但光发射光谱表明在费米能量处的状态很小但有限的状态密度,这表明大量材料是金属的。除了可能因近表面和界面效应而损害的电阻率测量值外,所有其他探针都表明Na $ _2 $ ruo $ _3 $是中等相关的电子金属。因此,我们的结果与较早的报道形成鲜明对比的是Na $ _2 $ ruo $ _3 $是低温下的抗铁磁绝缘子。
We report the synthesis and characterisation of polycrystalline Na$_2$RuO$_3$, a layered material in which the Ru$^{4+}$ ($4d^4$ configuration) form a honeycomb lattice. The optimal synthesis condition was found to produce a nearly ordered Na$_2$RuO$_3$ ($C2/c$ phase), as assessed from the refinement of the time-of-flight neutron powder diffraction. Magnetic susceptibility measurements reveal a large temperature-independent Pauli paramagnetism ($χ_0 \sim 1.42(2)\times10^{-3}$ emu/mol Oe) with no evidence of magnetic ordering down to 1.5 K, and with an absence of dynamic magnetic correlations, as evidenced by neutron scattering spectroscopy. The intrinsic susceptibility ($χ_0$) together with the Sommerfeld coeficient of $γ=11.7(2)$ mJ/Ru mol K$^2$ estimated from heat capacity measurements, gives an enhanced Wilson ratio of $R_W\approx8.9(1)$, suggesting that magnetic correlations may be present in this material. While transport measurements on pressed pellets show nonmetallic behaviour, photoemission spectrocopy indicate a small but finite density of states at the Fermi energy, suggesting that the bulk material is metallic. Except for resistivity measurements, which may have been compromised by near surface and interface effects, all other probes indicate that Na$_2$RuO$_3$ is a moderately correlated electron metal. Our results thus stand in contrast to earlier reports that Na$_2$RuO$_3$ is an antiferromagnetic insulator at low temperatures.