Ultrafast decoupling of polarization and strain in ferroelectric BaTiO3

L Le Phuong Hoang D David Pesquera G Gerard N. Hinsley R Robert Carley (European XFEL, Holzkoppel 4, 22869 Schenefeld, Germany) L Laurent Mercadier M Martin Teichmann (European XFEL, Holzkoppel 4, 22869 Schenefeld, Germany) E Elena Martina Unterleutner D Daniel Knez M Martina Dienstleder S Saptam Ganguly T Teguh Citra Asmara G Giacomo Merzoni S Sergii Parchenko J Justine Schlappa Z Zhong Yin (International Center for Synchrotron Radiation Innovation Smart) J José Manuel Caicedo Roque J José Santiso I Irena Spasojevic C Cammille Carinan (European XFEL, Holzkoppel 4, 22869 Schenefeld, Germany) T Tien-Lin Lee (Diamond Light Source Ltd., Diamond House) K Kai Rossnagel J Jörg Zegenhagen G Gustau Catalan I Ivan A. Vartanyants A Andreas Scherz (European XFEL, Holzkoppel 4, 22869 Schenefeld, Germany) G Giuseppe Mercurio

Abstract

Abstract A fundamental understanding of the interplay between lattice structure, polarization and electrons is pivotal to the optical control of ferroelectrics. The interaction between light and matter enables the remote and wireless control of the ferroelectric polarization on the picosecond timescale, while inducing strain, i.e., lattice deformation. At equilibrium, the ferroelectric polarization is proportional to the strain, and is typically assumed to be so also out of equilibrium. Decoupling the polarization from the strain would remove the constraint of sample design and provide an effective knob to manipulate the polarization by light. Here, upon above-bandgap laser excitation of the prototypical ferroelectric BaTiO 3 , we induce and measure an ultrafast decoupling between polarization and strain that begins within 350 fs, by softening Ti-O bonds via charge transfer, and lasts for several tens of picoseconds. We show that the ferroelectric polarization out of equilibrium is mainly determined by photoexcited electrons, instead of the strain.

Article Details

Volume / Issue Vol. 16, Issue 1
Published August 26, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (26)

L

Le Phuong Hoang

D

David Pesquera

G

Gerard N. Hinsley

R

Robert Carley

European XFEL, Holzkoppel 4, 22869 Schenefeld, Germany

L

Laurent Mercadier

M

Martin Teichmann

European XFEL, Holzkoppel 4, 22869 Schenefeld, Germany

E

Elena Martina Unterleutner

D

Daniel Knez

M

Martina Dienstleder

S

Saptam Ganguly

T

Teguh Citra Asmara

G

Giacomo Merzoni

S

Sergii Parchenko

J

Justine Schlappa

Z

Zhong Yin

International Center for Synchrotron Radiation Innovation Smart

J

José Manuel Caicedo Roque

J

José Santiso

I

Irena Spasojevic

C

Cammille Carinan

European XFEL, Holzkoppel 4, 22869 Schenefeld, Germany

T

Tien-Lin Lee

Diamond Light Source Ltd., Diamond House

K

Kai Rossnagel

J

Jörg Zegenhagen

G

Gustau Catalan

I

Ivan A. Vartanyants

A

Andreas Scherz

European XFEL, Holzkoppel 4, 22869 Schenefeld, Germany

G

Giuseppe Mercurio