Motivated by the discovery of superconductivity in KTaO3-based heterostructures, we study a pairing mechanism based on spin-orbit assisted coupling between the conduction electrons and the ferroelectric (FE) modes present in the material. We use ab initio frozen-phonon computations to show a linear-in-momentum Rashba-like coupling with a strong angular dependence in momentum for the lower j = 3 / 2 manifold, deviating from the conventional isotropic Rashba model. This implies the Rashba-like interaction with the polar modes has substantial L = 3 cubic harmonic corrections, which we quantify for each electronic band. The strong anisotropy of the Rashba interaction is captured by a microscopic toy model for the t 2 g electrons. We find its origin to be the angular dependence in electronic momentum imposed by the kinetic term on the degenerate j = 3 / 2 manifold. A comparison between the toy model and ab initio results indicates that additional symmetry allowed terms beyond odd-parity spin-conserving inter-orbital hopping processes are needed to describe the Rashba-like polar interaction between the electrons and the soft FE mode. © 2023 The Author(s). Published by IOP Publishing Ltd.

Anisotropic Rashba coupling to polar modes in KTaO3

Giulia Venditti;Paolo Barone;Jose Lorenzana;
2023

Abstract

Motivated by the discovery of superconductivity in KTaO3-based heterostructures, we study a pairing mechanism based on spin-orbit assisted coupling between the conduction electrons and the ferroelectric (FE) modes present in the material. We use ab initio frozen-phonon computations to show a linear-in-momentum Rashba-like coupling with a strong angular dependence in momentum for the lower j = 3 / 2 manifold, deviating from the conventional isotropic Rashba model. This implies the Rashba-like interaction with the polar modes has substantial L = 3 cubic harmonic corrections, which we quantify for each electronic band. The strong anisotropy of the Rashba interaction is captured by a microscopic toy model for the t 2 g electrons. We find its origin to be the angular dependence in electronic momentum imposed by the kinetic term on the degenerate j = 3 / 2 manifold. A comparison between the toy model and ab initio results indicates that additional symmetry allowed terms beyond odd-parity spin-conserving inter-orbital hopping processes are needed to describe the Rashba-like polar interaction between the electrons and the soft FE mode. © 2023 The Author(s). Published by IOP Publishing Ltd.
2023
Istituto dei Sistemi Complessi - ISC
Istituto Superconduttori, materiali innovativi e dispositivi - SPIN
Inglese
6
1
14
https://iopscience.iop.org/article/10.1088/2515-7639/acb017
Rashba coupling
ferroelectric mode
unconventional superconductivity
We acknowledge financial support from the Italian MIUR through Projects Nos. PRIN 2017Z8TS5B and 20207ZXT4Z. M N G is supported by the Marie Sklodowska-Curie individual fellowship Grant Agreement SILVERPATH No.893943. We acknowledge the CINECA award under the ISCRA initiative Grants Nos. HP10CCJFWR and HP10CPHFAR, for the availability of high-performance computing resources and support.
5
info:eu-repo/semantics/article
262
Venditti, Giulia; Eleonora Temperini, Maria; Barone, Paolo; Lorenzana, Jose; N Gastiasoro, Maria
01 Contributo su Rivista::01.01 Articolo in rivista
open
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/463182
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