Bulletin of the American Physical Society
2024 Annual Meeting of the APS Four Corners Section
Friday–Saturday, October 11–12, 2024; Northern Arizona University, Flagstaff, Arizona
Session K01: Poster Session (4:00pm - 6:00pm)
4:00 PM,
Friday, October 11, 2024
Northern Arizona University
Room: Ballroom
Abstract: K01.00051 : Electronic Structure of Square-Planar Palladates
Presenter:
Lidia Y Cifuentes Santander
(Arizona State University)
Authors:
Lidia Y Cifuentes Santander
(Arizona State University)
Jesse Kepeghian
(Arizona State University)
Jackson Headon
(Arizona State University)
Antia Botana
(Arizona State University)
Sasha Gavrilov
(Arizona State University)
Shekhar Sharma
(Arizona State University)
Arshia Agarwal
(Arizona State University)
electron count, superconductivity in nickelates was first discovered in the square-planar family with general formula R n+1 Ni n O 2n+2 (R = La, Pr, Nd), characterized by having n-NiO 2 layers and a Ni oxidation state close to 1+. Within this family, both the infinite-layer compound RNiO 2 (R = La, Pr, Nd) [1] and the quintuple-layer Nd 6 Ni 5 O 12 material [2] have been shown to be superconducting with similar critical temperature Tc ∼ 15 K. Motivated by this series of discoveries, we use first-principles calculations to construct the equivalent palladate series and compare it to the nickelate analogs both structurally and electronically. Our calculations show that the electronic structure of the Pd-compounds is closer to that of the cuprates as it displays a single-band d x2 -y2 Fermi surface topology and a larger p-d hybridization than the corresponding Ni counterparts. These electronic features suggest that, if realized, reduced palladates could be promising candidates for higher-Tc superconductivity.
[1] Nature 572, 624 (2019)
[2] Nature Materials 21, 160 (2022)
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