论文标题
fete $ _ {1-x} $ se $ _x $中的相关驱动的电子重建
Correlation-Driven Electronic Reconstruction in FeTe$_{1-x}$Se$_x$
论文作者
论文摘要
电子相关性对于高温超导性至关重要。库酸酯中低能电子状态在整个相图中都受到相关效应的主要影响,但在基于铁的超导体中,对相关驱动的fermiology的变化观察仍然很少见。在这里,我们提供了实验性证据,表明费米表面相关驱动的重建,由两个正交轴的温度和se/te比在铁辣椒粉中的fete fete $ _ {1-x} $ se $ _x $中独立调整。我们证明,这种重建是由强烈重新归一化的$ d_ {xy} $ orbital驱动的,其余的巡回铁3 $ d $轨道在轨道选择性莫特阶段的出现中。我们的理论计算进一步支持了我们的观察结果,是从强度相关的金属相到SE浓度降低$ d_ {xy} $的轨道选择性莫特相的显着光谱特征。
Electronic correlation is of fundamental importance to high temperature superconductivity. While the low energy electronic states in cuprates are dominantly affected by correlation effects across the phase diagram, observation of correlation-driven changes in fermiology amongst the iron-based superconductors remains rare. Here we present experimental evidence for a correlation-driven reconstruction of the Fermi surface tuned independently by two orthogonal axes of temperature and Se/Te ratio in the iron chalcogenide family FeTe$_{1-x}$Se$_x$. We demonstrate that this reconstruction is driven by the de-hybridization of a strongly renormalized $d_{xy}$ orbital with the remaining itinerant iron 3$d$ orbitals in the emergence of an orbital-selective Mott phase. Our observations are further supported by our theoretical calculations to be salient spectroscopic signatures of such a non-thermal evolution from a strongly correlated metallic phase into an orbital-selective Mott phase in $d_{xy}$ as Se concentration is reduced.