Orbital and Spin Edelstein Effects in KTaO <sub>3</sub> (110) Two‐Dimensional Electron Gases

H Hugo Witt (Laboratoire Albert Fert, CNRS Thales, Université Paris‐Saclay Palaiseau France) A Aravind Raji (Laboratoire de Physique de Solides, CNRS Université Paris‐Saclay Paris France) S Srijani Mallik (Laboratoire Albert Fert, CNRS Thales, Université Paris‐Saclay Palaiseau France) B Börge Göbel (Institute of Physics Martin‐Luther‐Universität Halle‐Wittenberg Halle (Saale) Germany) L Luis M. Vicente‐Arche (Laboratoire Albert Fert, CNRS Thales, Université Paris‐Saclay Palaiseau France) S Sara Varotto (Laboratoire Albert Fert, CNRS Thales, Université Paris‐Saclay Palaiseau France) J Julien Bréhin (Laboratoire Albert Fert, CNRS Thales, Université Paris‐Saclay Palaiseau France) G Gerbold Ménard R Raphaël Salazar (Synchrotron SOLEIL L'Orme des Merisiers Gif‐sur‐Yvette Cedex France) J Julien Rault (Synchrotron SOLEIL L'Orme des Merisiers Gif‐sur‐Yvette Cedex France) F Francois Bertran P Patrick Le Fèvre I Isabella Boventer (Laboratoire Albert Fert, CNRS Thales, Université Paris‐Saclay Palaiseau France) I Ingrid Mertig (Institute of Physics Martin‐Luther‐Universität Halle‐Wittenberg Halle (Saale) Germany) A Agnès Barthélémy (Laboratoire Albert Fert, CNRS Thales, Université Paris‐Saclay Palaiseau France) A Alexandre Gloter A Annika Johansson (Institute of Physics Martin‐Luther‐Universität Halle‐Wittenberg Halle (Saale) Germany) N Nicolas Bergeal (Laboratoire de Physique et d'Etude des Matériaux, ESPCI Paris, CNRS Université PSL Paris France) M Manuel Bibes

Abstract

ABSTRACT The orbital Edelstein effect converts an electric field into a non‐equilibrium orbital polarization, opening new opportunities for orbitronics. Although signatures of the orbital Edelstein effect have been reported, its microscopic mechanisms and quantitative validation remain underexplored. Here, by directly linking the atomic structure of (110) two‐dimensional electron gases to both their calculated and measured electronic band dispersions, we predict and provide experimental evidence for a significant orbital Edelstein contribution that governs the anisotropy of its harmonic transport response. Scanning transmission electron microscopy and electron energy‐loss spectroscopy resolve the interfacial atomic configuration, which is used as input for density‐functional calculations. Angle‐resolved photoemission spectroscopy then confirms the resulting band structure, which is fitted by a tight‐binding model enabling computation of the spin and orbital Edelstein responses. Harmonic magnetotransport measurements reveal an anisotropic response that cannot be accounted for within a purely spin Edelstein framework, and is quantitatively reproduced by including an orbital contribution of order 20%. Our results establish (110) as a model platform for orbitronics and demonstrate a pathway to generate and harness orbital polarization in quantum oxide systems while also offering new insights into pairing mechanisms in their superconducting state.

Article Details

Volume / Issue Vol. 1, Issue 1
Published July 17, 2026
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (19)

H

Hugo Witt

Laboratoire Albert Fert, CNRS Thales, Université Paris‐Saclay Palaiseau France

A

Aravind Raji

Laboratoire de Physique de Solides, CNRS Université Paris‐Saclay Paris France

S

Srijani Mallik

Laboratoire Albert Fert, CNRS Thales, Université Paris‐Saclay Palaiseau France

B

Börge Göbel

Institute of Physics Martin‐Luther‐Universität Halle‐Wittenberg Halle (Saale) Germany

L

Luis M. Vicente‐Arche

Laboratoire Albert Fert, CNRS Thales, Université Paris‐Saclay Palaiseau France

S

Sara Varotto

Laboratoire Albert Fert, CNRS Thales, Université Paris‐Saclay Palaiseau France

J

Julien Bréhin

Laboratoire Albert Fert, CNRS Thales, Université Paris‐Saclay Palaiseau France

G

Gerbold Ménard

R

Raphaël Salazar

Synchrotron SOLEIL L'Orme des Merisiers Gif‐sur‐Yvette Cedex France

J

Julien Rault

Synchrotron SOLEIL L'Orme des Merisiers Gif‐sur‐Yvette Cedex France

F

Francois Bertran

P

Patrick Le Fèvre

I

Isabella Boventer

Laboratoire Albert Fert, CNRS Thales, Université Paris‐Saclay Palaiseau France

I

Ingrid Mertig

Institute of Physics Martin‐Luther‐Universität Halle‐Wittenberg Halle (Saale) Germany

A

Agnès Barthélémy

Laboratoire Albert Fert, CNRS Thales, Université Paris‐Saclay Palaiseau France

A

Alexandre Gloter

A

Annika Johansson

Institute of Physics Martin‐Luther‐Universität Halle‐Wittenberg Halle (Saale) Germany

N

Nicolas Bergeal

Laboratoire de Physique et d'Etude des Matériaux, ESPCI Paris, CNRS Université PSL Paris France

M

Manuel Bibes