Abstract
We present a combined soft x-ray and high-resolution vacuum-ultraviolet angle-resolved photoemission spectroscopy study of the electron-overdoped cuprate Pr1.3-xLa0.7CexCuO4 (PLCCO). Demonstration of its highly two-dimensional band structure enabled precise determination of the in-plane self-energy dominated by electron-electron scattering. Through analysis of this self-energy and the Fermi liquid cut-off energy scale, we find - in contrast to hole-doped cuprates - a momentum isotropic and comparatively weak electron correlation in PLCCO. Yet, the self-energies extracted from multiple oxide systems combine to demonstrate a logarithmic divergent relation between the quasiparticle scattering rate and mass. This constitutes a spectroscopic version of the Kadowaki-Woods relation with an important merit - the demonstration of Fermi liquid quasiparticle lifetime and mass being set by a single energy scale.
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CITATION STYLE
Horio, M., Kramer, K. P., Wang, Q., Zaidan, A., Von Arx, K., Sutter, D., … Chang, J. (2020). Oxide Fermi liquid universality revealed by electron spectroscopy. Physical Review B, 102(24). https://doi.org/10.1103/PhysRevB.102.245153
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