Persistent paramagnons in high-temperature infinite-layer nickelate superconductors
Abstract
Abstract The recent discovery of high-temperature superconductivity in hole-doped SmNiO 2 , exhibiting the record-high transition temperature T c among infinite-layer (IL) nickelates, has opened a new avenue for exploring design principles of superconductivity. Experimentally determining the electronic structure and magnetic interactions in this new system is crucial to elucidating the mechanism behind the enhanced superconductivity. Here, we report a Ni L -edge resonant inelastic x-ray scattering (RIXS) study of superconducting Sm-based IL nickelate thin films Sm 1− x − y Eu x Ca y NiO 2 (SECNO). Dispersive paramagnonic excitations are observed in both optimally and overdoped SECNO samples, supporting a spin-fluctuation-mediated pairing scenario. However, despite the two-fold enhancement of T c in the Sm-based nickelates compared to their Pr-based counterparts, the effective exchange coupling strength is reduced by approximately 20%. This behavior contrasts with hole-doped cuprates, where magnetic interactions correlate positively with T c , highlighting essential differences in their superconducting mechanisms.
Article Details
Authors (28)
Yujie Yan
Ying Chan
Xunyang Hong
S. Lin Er Chow
Zhaoyang Luo
Yuehong Li
Tianren Wang
Yuetong Wu
Izabela Biało
Nurul Fitriyah
Saurav Prakash
Xing Gao
King Yau Yip
Qiang Gao
Xiaolin Ren
Jaewon Choi
Ganesha Channagowdra
Jun Okamoto
Xingjiang Zhou
Zhihai Zhu
Liang Si
Mirian Garcia-Fernandez
Ke-Jin Zhou
Diamond Light Source, Harwell Campus, Didcot, UK.
Hsiao-Yu Huang
Di-Jing Huang
Johan Chang
A. Ariando
Qisi Wang