Photoinduced correlations in stochastic dynamics of a solid-state ionic conductor

J Jackson McClellan (Department of Chemistry) A Alfred Zong K Kim H. Pham (Division of Chemistry and Chemical Engineering) H Hanzhe Liu Z Zachery W. B. Iton B Burak Guzelturk D Donald A. Walko (Advanced Photon Source) H Haidan Wen (Advanced Photon Source, Argonne National Laboratory) S Scott K. Cushing (Division of Chemistry and Chemical Engineering) M Michael W. Zuerch (Department of Chemistry)

Abstract

Abstract Photoexcitation by ultrashort laser pulses plays a crucial role in controlling reaction pathways, creating nonequilibrium material properties, and probing complex molecular dynamics. The photoresponse following a laser pulse is generally nonidentical between exposures due to spatiotemporal fluctuations or the stochastic nature of dynamical pathways. However, most ultrafast pump-probe experiments struggle to distinguish intrinsic sample fluctuations from extrinsic apparatus noise, often missing deviations from the averaged response. Leveraging the stability and high photon flux of time-resolved X-ray micro-diffraction at a synchrotron, we characterized stochastic photoinduced dynamics in a solid-state ionic conductor. By analyzing temporal evolutions of the lattice parameter of a single grain, we found that shot-to-shot fluctuations are not independent. Instead, correlations exist between nonequilibrium lattice trajectories following adjacent shots, with a characteristic correlation length of approximately 1500 shots, corresponding to an energy barrier of 0.4 ± 0.1 eV, close to the activation energy of lithium-ion diffusion.

Article Details

Volume / Issue Vol. 17, Issue 1
Published May 15, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (10)

J

Jackson McClellan

Department of Chemistry

A

Alfred Zong

K

Kim H. Pham

Division of Chemistry and Chemical Engineering

H

Hanzhe Liu

Z

Zachery W. B. Iton

B

Burak Guzelturk

D

Donald A. Walko

Advanced Photon Source

H

Haidan Wen

Advanced Photon Source, Argonne National Laboratory

S

Scott K. Cushing

Division of Chemistry and Chemical Engineering

M

Michael W. Zuerch

Department of Chemistry