论文标题
在ba $ _ {2} $ fesi $ _ {2} $ o $ $ _ {7} $中,在准Xy的反铁磁性状态下进行了野外诱导的自旋水平横梁
Field-induced spin level crossings within a quasi-XY antiferromagnetic state in Ba$_{2}$FeSi$_{2}$O$_{7}$
论文作者
论文摘要
我们提出了强烈各向异性易于平面平面晶格$ s $ s $ = 2量子磁铁ba $ _ {2} $ fesi $ _ {2} $ o $ $ $ _ {7} $。该化合物是一种罕见的高旋转抗铁磁系统,具有非常强的易于平面各向异性,因此可以研究自旋水平交叉和抗磁磁性秩序之间的相互作用。我们观察到在有序状态内发生的磁场诱导的自旋水平交叉。这种自旋水平交叉似乎可以保留磁对称性,同时产生非单调的依赖性量级参数幅度。所得的温度磁场相图显示了两个圆顶的磁性区域重叠在30 t附近。下场圆顶的基态主要是$ |的线性组合。 s^{z} = 0 \ rangle $和$ | s^{z} = 1 \ rangle $状态,而高场圆顶的基态可以通过$ |的线性组合近似近似s^{z} = 1 \ rangle $和$ | s^{z} = 2 \ rangle $状态。在30 T时,在自旋水平交叉的情况下,磁化表现出倾斜的平稳,{\ color {black}磁静电效应显示宽阔的驼峰,电偏振显示出较弱的斜率变化}。我们使用磁化强度,电化极化和脉冲磁场中的磁静电效应确定了详细的磁相边界和自旋水平交叉。我们使用基于SU(5)相干状态的直接产物(5)相干状态的平均磁场理论来计算这些特性,并找到良好的一致性。最后,我们测量和计算反映磁性顺序和自旋水平交叉的磁性电化极化。这种多效行为为检测相边界和对称变化提供了另一种途径。
We present a high-field study of the strongly anisotropic easy-plane square lattice $S$ = 2 quantum magnet Ba$_{2}$FeSi$_{2}$O$_{7}$. This compound is a rare high-spin antiferromagnetic system with very strong easy-plane anisotropy, such that the interplay between spin level crossings and antiferromagnetic order can be studied. We observe a magnetic field-induced spin level crossing occurring within an ordered state. This spin level crossing appears to preserve the magnetic symmetry while producing a non-monotonic dependence the order parameter magnitude. The resulting temperature-magnetic field phase diagram exhibits two dome-shaped regions of magnetic order overlapping around 30 T. The ground state of the lower-field dome is predominantly a linear combination of $| S^{z} = 0 \rangle$ and $ |S^{z} = 1 \rangle$ states, while the ground state of the higher-field dome can be approximated by a linear combination of $| S^{z} = 1 \rangle $ and $ | S^{z} = 2\rangle$ states. At 30 T, where the spin levels cross, the magnetization exhibits a slanted plateau, {\color {black}the magnetocaloric effect shows a broad hump, and the electric polarization shows a weak slope change}. We determined the detailed magnetic phase boundaries and the spin level crossings using measurements of magnetization, electric polarization, and the magnetocaloric effect in pulsed magnetic fields to 60 T. We calculate these properties using a mean field theory based on direct products of SU(5) coherent states and find good agreement. Finally, we measure and calculate the magnetically-induced electric polarization that reflects magnetic ordering and spin level crossings. This multiferroic behavior provides another avenue for detecting phase boundaries and symmetry changes.