Electronic Structure of ( = 0.25, = 0.08) Revealed by Angle-Resolved Photoemission Spectroscopy
arXiv:2001.09241 · doi:10.7566/JPSJ.88.084701
Abstract
We have investigated the electronic structure of ( = 0.25, = 0.08) by means of angle-resolved photoemission spectroscopy. From the comparison with the results of , the effects of smaller structural anisotropy () on the Fermi surfaces (FSs) and the gap structures are discussed. The observed FSs have three dimensional shapes. One of the hole FSs is strongly warped between the and points, and the innermost FS observed at the point disappears at the point, which is similar to the FS features of ( = 0.35). In the superconducting state, the node like gap-minimum is present for the electron FS near the point, while the gaps around the other high symmetry points are isotropic. Several theoretical models based on the spin and/or the orbital fluctuation are examined to explain all these experimental results.
23 pages, 11 figures, 1 table
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