论文标题
Eual $ _4 $和EUGA $ _4 $拓扑抗Fiferromagnets中的旋转订单和波动:$μ$ SR研究
Spin order and fluctuations in the EuAl$_4$ and EuGa$_4$ topological antiferromagnets: A $μ$SR study
论文作者
论文摘要
我们报告了有关$ _4 $和EUGA $ _4 $单晶在微观水平上的磁性特性的系统性旋转旋转和放松($ $ $ SR)的研究。横向场$μ$ SR的测量值跨越宽的温度范围(从1.5到50 K),显示清晰的AFM过渡,在两种情况下,磁性体积分数几乎为100%。零场$μ$ SR测量值涵盖AFM和PRAMAGNETIC(PM)状态,揭示了内部磁场$ B_ \ MATHRM {int}(0)= 0.33 $ t和0.33 $ t和0.89 t eual $ _4 $和EUGA $ _4 $。横向muon自旋松弛率$λ__\ Mathrm {t} $是对Muon-Stopping站点的内部场分布的度量,显示出一种对比行为。在EUGA $ _4 $中,它随着温度降低而减小,在零温度下达到最低,$λ_\ Mathrm {t}(0)= 0.71 $ $ $ $ $ $ $ $ $ s $^{ - 1} $。在Eual $ _4 $中,它在1.5 K时达到58 $μ$ S $^{ - 1} $的58 $μ$ s $^{ - 1} $在1.5 k时的增加显着增加,很可能反映了复杂的磁性结构和Eual $ _4 $的AFM状态中的相互作用。在这两种化合物中,温度依赖性纵向muon-spin弛豫$λ_\ mathrm {l}(t)$,表明自旋波动速率的指示,在AFM订单的发作接近接近,然后在$ t <t_ \ t_ \ mathrm {n} $中显着下降。在AFM州,旋转波动的$ _4 $比在EUGA $ _4 $中要强得多,而在PM州则是可比的。 $μ$ SR提供的对外部磁场的强大旋转波动的证据可能会为拓扑厅效应的起源以及Eual $ _4 $和EUGA $ _4 $化合物中可能的磁性天空提供新的见解。
We report on systematic muon-spin rotation and relaxation ($μ$SR) studies of the magnetic properties of EuAl$_4$ and EuGa$_4$ single crystals at a microscopic level. Transverse-field $μ$SR measurements, spanning a wide temperature range (from 1.5 to 50 K), show clear bulk AFM transitions, with an almost 100% magnetic volume fraction in both cases. Zero-field $μ$SR measurements, covering both the AFM and the paramagnetic (PM) states, reveal internal magnetic fields $B_\mathrm{int}(0) = 0.33$ T and 0.89 T in EuAl$_4$ and EuGa$_4$, respectively. The transverse muon-spin relaxation rate $λ_\mathrm{T}$, a measure of the internal field distribution at the muon-stopping site, shows a contrasting behavior. In EuGa$_4$, it decreases with lowering the temperature, reaching its minimum at zero temperature, $λ_\mathrm{T}(0) = 0.71$ $μ$s$^{-1}$. In EuAl$_4$, it increases significantly below $T_\mathrm{N}$, to reach 58 $μ$s$^{-1}$ at 1.5 K, most likely reflecting the complex magnetic structure and the competing interactions in the AFM state of EuAl$_4$. In both compounds, the temperature-dependent longitudinal muon-spin relaxation $λ_\mathrm{L}(T)$, an indication of the rate of spin fluctuations, diverges near the onset of AFM order, followed by a significant drop at $T < T_\mathrm{N}$. In the AFM state, spin fluctuations are much stronger in EuAl$_4$ than in EuGa$_4$, while being comparable in the PM state. The evidence of robust spin fluctuations against the external magnetic fields provided by $μ$SR may offer new insights into the origin of the topological Hall effect and the possible magnetic skyrmions in the EuAl$_4$ and EuGa$_4$ compounds.