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Electronic Structure and Superconductivity in La1.55Sr0.45CuO4/La2CuO4 Artificial High-Tc Superlattices Probed by Hard and Soft X-ray Spectroscopy

U. M. Jayathilake, S. Sheikh, T. -L. Lee, C. Klewe, G. Logvenov, G. Campi, A. Bianconi, A. X. Gray

cond-mat.supr-conarXiv:2609.02668

Abstract

In La1.55Sr0.45CuO4/La2CuO4 (LSCO/LCO) artificial high-Tc superlattices (AHTS), grown by quantum material design, the superconducting dome can be tuned by varying the geometric ratio L/d, where L is the LCO layer thickness and d is the superlattice nanoscale period. Here, we combine hard X-ray photoelectron spectroscopy (HAXPES) and polarization-dependent soft X-ray absorption spectroscopy (XAS) to probe how the electronic structure evolves across the L/d-tuned superconducting dome. We observe systematic chemical-potential evolution across the series, together with enhanced spectral weight near the Fermi level, enhanced local and non-local screening signatures, and increased in-plane orbital polarization near the top of the dome. Together, these spectroscopic signatures provide insight into the emergence of Fano-Feshbach resonant superconductivity in the LSCO/LCO AHTS series.

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