论文标题

声子,Q依赖的近代自旋波动和4 $ \ textit {f} $/phonon共鸣ybal $ _3 $

Phonons, Q-dependent Kondo spin fluctuations, and 4$\textit{f}$/phonon resonance in YbAl$_3$

论文作者

Christianson, Andrew D., Fanelli, Victor R., Lindsay, Lucas, Mu, Sai, Rahn, Marein C., Mazzone, Daniel G., Said, Ayman H., Ronning, Filip, Bauer, Eric D., Lawrence, Jon M.

论文摘要

中等价(IV)化合物ybal $ _3 $表现出非整体价(yb 4 $ f^{14-n_f} $(5d6s)$^z $其中z = 2+n $ _f $ = 2.75)中有中等重量(m* = 20-30me)的地面,具有巨大的kondo $ kondo温度(m* = 20-30me)的地面(我们通过飞行时间非弹性中子散射(INS)和非弹性X射线散射(IXS)测量了该材料的单晶上的磁波和声子光谱。我们发现,在低温下,Kondo尺度的自旋波动具有类似于IV化合物CEPD $ _3 $最近所见的动量(Q)依赖性,并且可以归因于相干的4 $ f $ f $相关基层状态的粒子孔激发。 Q依赖性随着温度升高到室温而消失,而4 $ f $电子带状态变得越来越不连贯。可以通过基于标准DFT+$ u $密度功能理论的计算来充分描述测得的声子,而无需动态考虑4 $ f $相关性。在〜30mev处的中子散射中观察到的低温磁峰显示与光学声子分支相同。对于T> 150K,这个4 $ f $/Phonon共振消失了。声子似乎仍然不受共鸣的影响。我们讨论了这种不寻常的激励起源的几种可能性,包括它是由对沉重的YB原子对轻度原子的振幅大弹性产生的,从而导致了动态的4 $ f $ f $/3 $ p $杂交。

The intermediate valence (IV) compound YbAl$_3$ exhibits nonintegral valence (Yb 4$f^{14-n_f}$ (5d6s)$^z$ where z = 2+n$_f$ = 2.75) in a moderately heavy (m* = 20-30me) ground state with a large Kondo temperature (T$_K$ ~ 500-600K). We have measured the magnetic fluctuations and the phonon spectra on single crystals of this material by time-of-flight inelastic neutron scattering (INS) and inelastic x-ray scattering (IXS). We find that at low temperature, the Kondo-scale spin fluctuations have a momentum (Q) dependence similar to that seen recently in the IV compound CePd$_3$ and which can be attributed to particle-hole excitations in a coherent itinerant 4$f$ correlated ground state. The Q-dependence disappears as the temperature is raised towards room temperature and the 4$f$ electron band states become increasingly incoherent. The measured phonons can be described adequately by a calculation based on standard DFT+$U$ density functional theory, without recourse to considering 4$f$ correlations dynamically. A low temperature magnetic peak observed in the neutron scattering at ~ 30meV shows dispersion identical to an optic phonon branch. This 4$f$/phonon resonance disappears for T > 150K. The phonons appear to remain unaffected by the resonance. We discuss several possibilities for the origin of this unusual excitation, including the idea that it arises from the large amplitude beating of the light Al atoms against the heavy Yb atoms, resulting in a dynamic 4$f$/3$p$ hybridization.

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