Spin correlations in La$_3$Ni$_2$O$_7$ superconducting thin films
Hengyang Zhong, Bo Hao, Zhijia Zhang, Anni Chen, Yuan Wei, Ruixian Liu, Xinru Huang, Chunyi Li, Wenting Zhang, Chang Liu, Xiao-Sheng Ni, Marli dos Reis Cantarino, Kurt Kummer, Nicholas Brookes, Kun Cao, Yuefeng Nie, Thorsten Schmitt, and Xingye Lu

TL;DR
This study uses resonant inelastic X-ray scattering to investigate how strain affects spin excitations and electronic structure in La$_3$Ni$_2$O$_7$ thin films, revealing strain-dependent changes linked to superconductivity.
Contribution
It provides the first detailed spectroscopic analysis of strain-dependent spin and electronic excitations in La$_3$Ni$_2$O$_7$ thin films, highlighting the role of structural parameters in superconductivity.
Findings
Strain influences the bandwidth of spin excitations.
Superconductivity correlates with enhanced spin correlations.
Strain modifies interlayer exchange coupling $J_z$ and hybridization.
Abstract
The discovery of ambient-pressure superconductivity with K in {\LNO} (LNO) thin films grown on the SrLaAlO (SLAO) substrate with compressive () epitaxial strain provides a unique platform for investigating the superconducting mechanisms in nickelate superconductors. Here, we use resonant inelastic X-ray scattering (RIXS) to unveil the dispersive spin excitations in the LNO/SLAO superconducting thin film and establish the strain dependence of the electronic and spin excitations in LNO thin films with strain ranging from to . Compared with the bulk crystal, the LNO/SLAO thin film (with ) exhibits similar excitations and spin dynamics with larger bandwidth. By contrast, tensile-strained LNO/SrTiO () exhibits a marked suppression of both the…
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Taxonomy
TopicsMagnetic and transport properties of perovskites and related materials · Gas Sensing Nanomaterials and Sensors · Electrical and Thermal Properties of Materials
