Current-induced successive structural phase transitions beyond thermal equilibrium in single-crystal VO2

Fuente: arXiv
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Main Authors: Kitou, Shunsuke, Nakano, Akitoshi, Imaizumi, Masato, Nakamura, Yuiga, Nakamura, Yuto, Kishida, Hideo, Arima, Taka-hisa, Terasaki, Ichiro
Format: Preprint
Published: 2025
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author Kitou, Shunsuke
Nakano, Akitoshi
Imaizumi, Masato
Nakamura, Yuiga
Nakamura, Yuto
Kishida, Hideo
Arima, Taka-hisa
Terasaki, Ichiro
author_facet Kitou, Shunsuke
Nakano, Akitoshi
Imaizumi, Masato
Nakamura, Yuiga
Nakamura, Yuto
Kishida, Hideo
Arima, Taka-hisa
Terasaki, Ichiro
contents Nonequilibrium systems driven by external energy sources host unexplored physics; yet phase transitions beyond thermal equilibrium remain elusive. Here, we demonstrate that electric current induces structural phase transitions in single-crystal VO2, a prototypical strongly correlated material. At room temperature, synchrotron X-ray diffraction shows that a current density of 6.5 A/cm2 disrupts V-V dimers, driving a monoclinic-to-tetragonal insulator-to-metal transition, independent of Joule heating. Increasing the current to 10 A/cm2 triggers a discontinuous isotropic lattice expansion, stabilizing a novel tetragonal structure that does not exist in thermal equilibrium. Optical microscopy and microscopic Raman spectroscopy reveal dynamic domain motion and metastable phases, reminiscent of dissipative structures. These findings establish direct pathways to access hidden phases and symmetry changes beyond thermal equilibrium, broadening the frontiers of nonequilibrium thermodynamics.
format Preprint
id arxiv_https___arxiv_org_abs_2505_08186
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Current-induced successive structural phase transitions beyond thermal equilibrium in single-crystal VO2
Kitou, Shunsuke
Nakano, Akitoshi
Imaizumi, Masato
Nakamura, Yuiga
Nakamura, Yuto
Kishida, Hideo
Arima, Taka-hisa
Terasaki, Ichiro
Strongly Correlated Electrons
Nonequilibrium systems driven by external energy sources host unexplored physics; yet phase transitions beyond thermal equilibrium remain elusive. Here, we demonstrate that electric current induces structural phase transitions in single-crystal VO2, a prototypical strongly correlated material. At room temperature, synchrotron X-ray diffraction shows that a current density of 6.5 A/cm2 disrupts V-V dimers, driving a monoclinic-to-tetragonal insulator-to-metal transition, independent of Joule heating. Increasing the current to 10 A/cm2 triggers a discontinuous isotropic lattice expansion, stabilizing a novel tetragonal structure that does not exist in thermal equilibrium. Optical microscopy and microscopic Raman spectroscopy reveal dynamic domain motion and metastable phases, reminiscent of dissipative structures. These findings establish direct pathways to access hidden phases and symmetry changes beyond thermal equilibrium, broadening the frontiers of nonequilibrium thermodynamics.
title Current-induced successive structural phase transitions beyond thermal equilibrium in single-crystal VO2
topic Strongly Correlated Electrons
url https://arxiv.org/abs/2505.08186