论文标题
部分可观测时空混沌系统的无模型预测
Charge density wave-generated Fermi surfaces in NdTe$_3$
论文作者
论文摘要
在电荷密度波相(CDW)中,NDTE $ _3 $的电子结构通过角度分辨光发射光谱研究。高质量晶体和仔细的表面制备的结合揭示了费米表面拓扑中的细微和以前未观察到的细节,从而可以解释稀有地球Tritellurides RTE $ _3 $中富含和无法解释的量子振荡。特别是,可以观察到与原始频带的CDW诱导的复制品有关的几个封闭的费米表面元素,导致奇怪的是CDW不仅可以消除费米表面元素,而且可以在运输实验中观察到新的元素。此外,在CDW间隙中发现了一个较大的残留费米表面,非常接近间隙正常状态费米表面的位置。它的面积与NDTE $ _3 $中的高频量子振荡非常吻合,并且其存在通过强phonon-Phonon耦合与CDW的准一维特征相结合。最后,我们确定低频$α$量子振荡的起源无处不在,对于RTE $ _3 $家族中的较轻的R元素,并负责这些化合物中的高移动性。
The electronic structure of NdTe$_3$ in the charge density wave phase (CDW) is investigated by angle-resolved photoemission spectroscopy. The combination of high-quality crystals and careful surface preparation reveals subtle and previously unobserved details in the Fermi surface topology, allowing an interpretation of the rich and unexplained quantum oscillations in the rare earth tritellurides RTe$_3$. In particular, several closed Fermi surface elements can be observed that are related to CDW-induced replicas of the original bands, leading to the curious situation in which a CDW does not only remove Fermi surface elements but creates new ones that are observable in transport experiments. Moreover, a large residual Fermi surface is found in the CDW gap, very close to the position of the gapped normal-state Fermi surface. Its area agrees very well with high-frequency quantum oscillations in NdTe$_3$ and its presence is explained by strong electron-phonon coupling combined with the quasi one-dimensional character of the CDW. Finally, we identify the origin of the low-frequency $α$ quantum oscillations ubiquitous for the lighter R elements in the RTe$_3$ family and responsible for the high mobility in these compounds.