论文标题
慢慢的结晶电场波动中的近野晶格SMB $ _ {6} $
Slow crystalline electric field fluctuations in the Kondo lattice SmB$_{6}$
论文作者
论文摘要
这项工作报告了GD $^{3+} $ - 掺杂的SMB $ _ {6} $单晶在X-和Q波段微波频率不同的晶体学方向上的单晶的温度依赖性(ESR)的温度依赖性。我们发现在5.3 k $ \ leq t \ leq t \ leq $ 12.0 k之内的GD $^{3+} $ ESR线路($ΔH$)的异常不均匀扩展,这归因于慢速晶体电场(CEF)波动,比ESR Microwave Pumiser y Sim $ 10 GH)(CEF)慢速(CEF)波动率(CEF)。 This linewidth inhomogeneity may be associated to the coupling of the Gd$^{3+}$ $S$-states to the breathing mode of the SmB$_{6}$ cage, and can be simulated by a random distribution of the 4$^{th}$ CEF parameter, $b_4$, that strikingly takes negative and positive values.这种不均匀性设置的温度与连续绝缘体到金属相变的发作有关。此外,基于互构波动松弛模型,观察到的指数$ t $依赖性$ΔH$以上$ t \ simeq $ 10 k $ 10 k产生了激发能量,尤其接近SMB $ _ {6} $的杂交间隙($Δ\ simeq $ 60 K)。此电荷波动方案为SMB $ _ {6} $的物理属性提供了重要的成分。我们最终通过将GD $^{3+} $ ions通过动态Jahn-Teller类似于呼吸的Jahn-Teller类似于呼吸声子耦合到SMB $ _ {6} $的CEF波动下的电荷和价波动之间的相互作用。
This work reports on the temperature dependence of the electron spin resonance (ESR) of Gd$^{3+}$-doped SmB$_{6}$ single crystals at X- and Q-band microwave frequencies in different crystallographic directions. We found an anomalous inhomogeneous broadening of the Gd$^{3+}$ ESR linewidth ($ΔH$) within 5.3 K $\leq T \leq$ 12.0 K which is attributed to slow crystalline electric field (CEF) fluctuations, slower than the timescale of the ESR microwave frequencies used ($\sim$10 GHz). This linewidth inhomogeneity may be associated to the coupling of the Gd$^{3+}$ $S$-states to the breathing mode of the SmB$_{6}$ cage, and can be simulated by a random distribution of the 4$^{th}$ CEF parameter, $b_4$, that strikingly takes negative and positive values. The temperature at which this inhomogeneity sets in, is related to the onset of a continuous insulator-to-metal phase transition. In addition, based on the interconfigurational fluctuation relaxation model, the observed exponential $T$-dependence of $ΔH$ above $T\simeq$ 10 K gives rise to an excitation energy notably close to the hybridization gap of SmB$_{6}$ ($Δ\simeq$ 60 K). This charge fluctuation scenario provides important ingredients to the physical properties of SmB$_{6}$. We finally discuss the interplay between charge and valence fluctuations under the view of slow CEF fluctuations in SmB$_{6}$ by coupling the Gd$^{3+}$ ions to the breathing phonon mode via a dynamic Jahn-Teller-like mechanism.