论文标题
抗铁磁铁中的镁光谱和电子自旋共振,具有大型单子易于平面各向异性
Magnon spectrum and electron spin resonance in antiferromagnet with large single-ion easy plane anisotropy
论文作者
论文摘要
Motivated by recent experiments on quantum magnet NiCl$_{2}$-4SC(NH$_{2}$)$_{2}$ (DTN) and its Br-doped counterpart DTNX we propose a theoretical description of optical magnon branch in the antiferromagnet with large single-ion anisotropy in the magnetically ordered phase. In the framework of the 1/S expansion we derive analytical expressions for optical magnon with $\mathbf{k}=0$ energy magnetic field dependence $Δ(h)$. It is shown that in the linear spin wave approximation $Δ(h)$ is monotonic without extrema whereas first order in 1/S corrections makes it drastically different function with a minimum near the center of magnetically ordered phase.在ESR实验中观察到后一种行为。此外,我们表明$δ(h)$对系统参数具有非平凡的依赖性。 It solves the discrepancy between inelastic neutron scattering data where the growth of interaction constants in DTNX with small Br concentration was observed and ESR experiments showing almost unchanged $Δ(h)$ in comparison with pure DTN.
Motivated by recent experiments on quantum magnet NiCl$_{2}$-4SC(NH$_{2}$)$_{2}$ (DTN) and its Br-doped counterpart DTNX we propose a theoretical description of optical magnon branch in the antiferromagnet with large single-ion anisotropy in the magnetically ordered phase. In the framework of the 1/S expansion we derive analytical expressions for optical magnon with $\mathbf{k}=0$ energy magnetic field dependence $Δ(h)$. It is shown that in the linear spin wave approximation $Δ(h)$ is monotonic without extrema whereas first order in 1/S corrections makes it drastically different function with a minimum near the center of magnetically ordered phase. The latter behaviour was observed in ESR experiments. Moreover, we show that $Δ(h)$ has nontrivial dependence on the system parameters. It solves the discrepancy between inelastic neutron scattering data where the growth of interaction constants in DTNX with small Br concentration was observed and ESR experiments showing almost unchanged $Δ(h)$ in comparison with pure DTN.