Room-temperature multistage metastability in a moiré superstructure

B Baiqing Lv (Tsung-Dao Lee Institute, School of Physics and Astronomy, and State Key Laboratory of Micro-nano Engineering Science, Shanghai Jiao Tong University, Shanghai, China.) Y Yifan Su (Key Laboratory of Applied Surface and Colloid Chemistry of Ministry of Education, Shaanxi Provincial Key Laboratory of New Concept Sensors and Molecular Materials, School of Chemistry and Chemical Engineering) A Alfred Zong K Karna Morey B Bryan T. Fichera Q Qiaomei Liu D Dong Wu Y Yongchang Ma D Dupeng Zhang F Faran Zhou M Makoto Hashimoto (Stanford Synchrotron Radiation Lightsource) D Dong-Hui Lu D Donald A. Walko (Advanced Photon Source) H Haidan Wen (Advanced Photon Source, Argonne National Laboratory) J Jiarui Li S Suchismita Sarker (Cornell High Energy Synchrotron Source, Wilson Laboratory) J Jacob P. C. Ruff N Nanlin Wang N Nuh Gedik

Abstract

Abstract Charge density waves (CDWs) offer versatile platforms for accessing metastable states due to their sensitivity to external stimuli. However, most metastable CDW states are stabilized only at low temperatures, limiting their practical utility. In this study, we report the observation of electrically driven, room-temperature, nonvolatile metastable states in the bulk form of EuTe 4 , a recently discovered compound that hosts an innate moiré superlattice characterized by the stacking of incommensurate monolayer and bilayer CDWs. Systematic transport measurements reveal discrete resistivity plateaus and strong electric-field sensitivity, with a large number of metastable states readily induced across a wide temperature window within a giant hysteresis loop, making them well-suited for high-temperature, multi-bit memory applications. By integrating photoemission spectroscopy, diffraction, and in-situ transport measurements, we uncover that these metastable states are characterized by a suppression of the original CDW amplitude and a reduction in correlation length, pointing to a unique electric-field-induced switching of out-of-plane CDW phases in the moiré superstructure. Our findings provide critical insights into metastable phenomena in moiré systems with stacked electronic orders and establish EuTe 4 as a promising platform for developing room-temperature, multi-bit memory devices.

Article Details

Volume / Issue Vol. 17, Issue 1
Published June 02, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (19)

B

Baiqing Lv

Tsung-Dao Lee Institute, School of Physics and Astronomy, and State Key Laboratory of Micro-nano Engineering Science, Shanghai Jiao Tong University, Shanghai, China.

Y

Yifan Su

Key Laboratory of Applied Surface and Colloid Chemistry of Ministry of Education, Shaanxi Provincial Key Laboratory of New Concept Sensors and Molecular Materials, School of Chemistry and Chemical Engineering

A

Alfred Zong

K

Karna Morey

B

Bryan T. Fichera

Q

Qiaomei Liu

D

Dong Wu

Y

Yongchang Ma

D

Dupeng Zhang

F

Faran Zhou

M

Makoto Hashimoto

Stanford Synchrotron Radiation Lightsource

D

Dong-Hui Lu

D

Donald A. Walko

Advanced Photon Source

H

Haidan Wen

Advanced Photon Source, Argonne National Laboratory

J

Jiarui Li

S

Suchismita Sarker

Cornell High Energy Synchrotron Source, Wilson Laboratory

J

Jacob P. C. Ruff

N

Nanlin Wang

N

Nuh Gedik