论文标题
重费菲尔米材料的骨折晶体中的量子井状态cecoin $ _5 $
Quantum well states in fractured crystals of the heavy fermion material CeCoIn$_5$
论文作者
论文摘要
量子井状态出现在金属薄膜中,这是由于膜界面将波函数限制的。使用角度分辨的光发射光谱,我们意外地观察到Cecoin $ _5 $骨折的单晶中的量子井状态。我们证实,通过证明这些状态的结合能是光子能量独立的,并用相蓄积模型很好地描述了限制,该模型通常应用于薄膜中的量子井状态。这表明可以通过裂缝硬晶体形成原子薄膜。对于所研究的两个样品,我们的观察结果是通过厚度为206和101Å的独立薄片来解释的。我们扩展分析以提取Cecoin $ _5 $的散装特性。具体而言,我们沿着平面内和平面段沿区域中心附近的三维条带的分散。我们建立了其费米表面的一部分,该表面对应于以$γ$为中心的孔口袋。我们还揭示了其与温度的分散变化,这可能是由近代杂交引起的。
Quantum well states appear in metallic thin films due to the confinement of the wave function by the film interfaces. Using angle-resolved photoemission spectroscopy, we unexpectedly observe quantum well states in fractured single crystals of CeCoIn$_5$. We confirm that confinement occurs by showing that these states' binding energies are photon-energy independent and are well described with a phase accumulation model, commonly applied to quantum well states in thin films. This indicates that atomically flat thin films can be formed by fracturing hard single crystals. For the two samples studied, our observations are explained by free-standing flakes with thicknesses of 206 and 101 Å. We extend our analysis to extract bulk properties of CeCoIn$_5$. Specifically, we obtain the dispersion of a three-dimensional band near the zone center along in-plane and out-of-plane momenta. We establish part of its Fermi surface, which corresponds to a hole pocket centered at $Γ$. We also reveal a change of its dispersion with temperature, a signature that may be caused by the Kondo hybridization.