论文标题
过渡金属五角肽片的可调离散量表不变性
Tunable discrete scale invariance in transition-metal pentatelluride flakes
论文作者
论文摘要
在过渡金属五角肽中发现的对数周期量子振荡,在固态材料中清楚地证明了离散量表不变性(DSI)。令人信服地解释为具有库仑潜力的两体准结合状态的特殊现象。但是,尚未完全了解具有dirac样光谱的多体系统中库仑相互作用的修改。在这里,我们报告了ZRTE5和HFTE5薄片中可调的对数周期振荡和DSI的观察。通过减小薄片的厚度,由于真空极化效应的降低,特征尺度因子被调整为小得多的值。量表因子的减少表明了对DSI的多体效应,迄今为止很少讨论。此外,通过考虑Thomas-Fermi筛选效果来定量解释振荡的截止。我们的工作阐明了对DSI的多体效应,并铺平了一种在量子材料中调整DSI的方法。
Log-periodic quantum oscillations discovered in transition-metal pentatelluride give a clear demonstration of discrete scale invariance (DSI) in solid-state materials. The peculiar phenomenon is convincingly interpreted as the presence of two-body quasi-bound states in a Coulomb potential. However, the modifications of the Coulomb interactions in many-body systems having a Dirac-like spectrum are not fully understood. Here, we report the observation of tunable log-periodic oscillations and DSI in ZrTe5 and HfTe5 flakes. By reducing the flakes thickness, the characteristic scale factor is tuned to a much smaller value due to the reduction of the vacuum polarization effect. The decreasing of the scale factor demonstrates the many-body effect on the DSI, which has rarely been discussed hitherto. Furthermore, the cut-offs of oscillations are quantitatively explained by considering the Thomas-Fermi screening effect. Our work clarifies the many-body effect on DSI and paves a way to tune the DSI in quantum materials.