论文标题
二聚体链抗fiferromagnet bicopo $ _5 $的静态磁和ESR光谱特性
Static magnetic and ESR spectroscopic properties of the dimer-chain antiferromagnet BiCoPO$_5$
论文作者
论文摘要
我们报告了一项综合研究,该研究对二晶钴氧基磷酸盐bicopo bicopo $ _5 $的多晶样品的静态易感性,高磁场和高频/高磁场电子自旋共振(HF-ESR)光谱。该化合物具有一个奇特的自旋系统,可以被视为由成对的铁磁性耦合的CO旋转并在所有三个空间方向上互连的抗铁磁(AFM)链。先前的表明,Bicopo $ _5 $在$ t _ {\ rm n} \大约10 $ k上以抗fifRomagnet的方式订购,并且可以通过磁场向临界值$μ_0H_ {\ rm c} \ t. $ giect $ glunders $ g。值,表明轨道磁性对Co $^{2+} $离子有很大的贡献。这是通过量子量子化学计算来定量确认的。在AFM有序阶段,我们观察到一个不同的场诱导的磁相变。它的关键字段上升到$ \ sim 6 $ t at $ t \ ll t _ {\ rm n} $。记录在$ t \ ll t _ {\ rm n} $的HF-ESR光谱非常丰富,最多组成了六个可能的共振模式,可能是多磁性性质的,它们在6 t左右向关键区域软化。有趣的是,我们发现,我们发现co的瞬间尚未完全在$ h _ _ _ _ _ {$ c} $ c} $ c {$ c { C} $是BiCopo $ _5 $过渡到更强田地的量子无序状态的旋转系统过渡的量子关键点。
We report a comprehensive study of the static susceptibility, high-field magnetization and high-frequency/high-magnetic field electron spin resonance (HF-ESR) spectroscopy of polycrystalline samples of the bismuth cobalt oxy-phosphate BiCoPO$_5$. This compound features a peculiar spin system that can be considered as antiferromagnetic (AFM) chains built of pairs of ferromagnetically coupled Co spins and interconnected in all three spatial directions. It was previously shown that BiCoPO$_5$ orders antiferromagnetically at $T_{\rm N} \approx 10$ K and this order can be continuously suppressed by magnetic field towards the critical value $μ_0H_{\rm c} \approx 15$ T. In our experiments we find strongly enhanced magnetic moments and spectroscopic $g$ factors as compared to the expected spin-only values, suggesting a strong contribution of orbital magnetism for the Co$^{2+}$ ions. This is quantitatively confirmed by ab initio quantum chemical calculations. Within the AFM ordered phase, we observe a distinct field-induced magnetic phase transition. Its critical field rises to $\sim 6$ T at $T \ll T_{\rm N}$. The HF-ESR spectra recorded at $T\ll T_{\rm N}$ are very rich comprising up to six resonance modes possibly of the multimagnonic nature that soften towards the critical region around 6 T. Interestingly, we find that the Co moments are not yet fully polarized at $H_{\rm c}$ which supports a theoretical proposal identifying $H_{\rm c}$ as the quantum critical point for the transition of the spin system in BiCoPO$_5$ to the quantum disordered state at stronger fields.