Beijing National Laboratory for Condensed Matter Physics, and Institute of Physics, Chinese Academy of Sciences, Beijing 100190, People's Republic of China. Collaborative Innovation Center of Quantum Matter, Beijing, People's Republic of China.
J Phys Condens Matter. 2014 Jan 22;26(3):035702. doi: 10.1088/0953-8984/26/3/035702. Epub 2013 Dec 18.
We used angle-resolved photoemission spectroscopy to investigate the electronic structure and the Fermi surface of EuFe2As2, EuFe2As1.4P0.6 and EuFe2P2. We observed doubled core level peaks associated with the pnictide atoms. Using K atoms evaporated at the surface to affect the surface quality, we show that one component of these doubled peaks is related to a surface state. Nevertheless, strong electronic dispersion along the c-axis, especially pronounced in EuFe2P2, is observed for at least one band, thus indicating that the Fe states, albeit probably affected at the surface, do not form pure two-dimensional surface states. We determine the evolution of the Fermi surface as a function of the P content and reveal that the hole Fermi surface pockets enlarge with increasing P content. We also show that the spectral weight near the Fermi level of EuFe2P2 is reduced as compared to that of EuFe2As2 and EuFe2As1.4P0.6. Finally, we identify the electronic states associated with the Eu(2+) f states and show an anomalous jump in EuFe2P2.
我们使用角分辨光电子能谱研究了 EuFe2As2、EuFe2As1.4P0.6 和 EuFe2P2 的电子结构和费米面。我们观察到与磷化物原子相关的双峰芯能级峰。通过在表面蒸发 K 原子来影响表面质量,我们表明这些双峰的一个分量与表面态有关。然而,在 EuFe2P2 中,沿 c 轴观察到强烈的电子色散,尤其是在 EuFe2P2 中,至少有一个能带表现出强烈的电子色散,这表明 Fe 态尽管可能在表面受到影响,但并未形成纯二维表面态。我们确定了费米面作为 P 含量函数的演化,并揭示了空穴费米面口袋随 P 含量的增加而增大。我们还表明,与 EuFe2As2 和 EuFe2As1.4P0.6 相比,EuFe2P2 中费米能级附近的光谱权重减小。最后,我们确定了与 Eu(2+) f 态相关的电子态,并在 EuFe2P2 中观察到异常跳跃。