论文标题
呼吸弹性模式的软化和无序的Pyrochlore磁铁Nacaco $ _2 $ f $ _7 $中的三角弹性模式
Softening of breathing elastic mode and trigonal elastic mode in disordered pyrochlore magnet NaCaCo$_2$F$_7$
论文作者
论文摘要
钴Pyrochlore氟Nacaco $ _2 $ f $ _7 $是一种无序的沮丧磁铁Nacaco $ _2 $ f $ _7 $。散装模量(呼吸弹性模式)的温度依赖性在冷却低于$ \ sim $ 20 k至$ t_f $时表现出curie型软化,这被磁场抑制了。这种Curie型软化应该是通过自旋晶格耦合增强交换障碍强度的前体,这会导致自旋冻结。 In contrast to the magnetic-field-suppressed Curie-type softening in the bulk modulus, the trigonal shear modulus exhibits softening with a characteristic minimum upon cooling, which is enhanced by the magnetic field at temperatures below $\sim$20 K. This magnetic-field-enhanced elastic anomaly in the trigonal shear modulus suggests a coupling of the lattice to the dynamical spin-cluster 状态。对于Nacaco $ _2 $ f $ _7 $,观察到的弹性异常揭示了磁场引起的交叉发生,从同源晶格不稳定到旋转到旋转到三角形晶格的不稳定,这是由于新兴的晶格不稳定性而引起的。
Cobalt pyrochlore fluoride NaCaCo$_2$F$_7$ is a disordered frustrated magnet composed of Co$^{2+}$ ions with an effective spin-$\frac{1}{2}$ magnetic moment and exhibits spin freezing below $T_f \sim$2.4 K. We perform ultrasound velocity measurements on a single crystal of the cubic NaCaCo$_2$F$_7$. The temperature dependence of the bulk modulus (the breathing elastic mode) exhibits Curie-type softening upon cooling below $\sim$20 K down to $T_f$, which is suppressed by the magnetic field. This Curie-type softening should be a precursor to the enhancement of the strength of exchange disorder via the spin-lattice coupling, which causes the spin freezing. In contrast to the magnetic-field-suppressed Curie-type softening in the bulk modulus, the trigonal shear modulus exhibits softening with a characteristic minimum upon cooling, which is enhanced by the magnetic field at temperatures below $\sim$20 K. This magnetic-field-enhanced elastic anomaly in the trigonal shear modulus suggests a coupling of the lattice to the dynamical spin-cluster state. For NaCaCo$_2$F$_7$, the observed elastic anomalies reveal an occurrence of magnetic-field-induced crossover from an isostructural lattice instability toward the spin freezing to a trigonal lattice instability arising from the emergent dynamical spin-cluster state.