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Data and scripts from: Zero-temperature glass transition in two dimensions

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Charbonneau, P; Berthier, L; Ninarello, A; Ozawa, M; Yaida, S
February 26, 2019

Liquids cooled towards the glass transition temperature transform into amorphous solids that have a wide range of applications. While the nature of this transformation is understood rigorously in the mean-field limit of infinite spatial dimensions, the problem remains wide open in physical dimensions. Nontrivial finite-dimensional fluctuations are hard to control analytically, and experiments fail to provide conclusive evidence regarding the nature of the glass transition. Here, we develop Monte Carlo methods for two-dimensional glass-forming liquids that allow us to access equilibrium states at sufficiently low temperatures to directly probe the glass transition in a regime inaccessible to experiments. We find that the liquid state terminates at a thermodynamic glass transition which occurs at zero temperature and is associated with an entropy crisis and a diverging static correlation length. Our results thus demonstrate that a thermodynamic glass transition can occur in finite dimensional glass-formers.

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Publication Date

February 26, 2019
 

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Charbonneau, P., Berthier, L., Ninarello, A., Ozawa, M., & Yaida, S. (2019). Data and scripts from: Zero-temperature glass transition in two dimensions. https://doi.org/10.7924/r46w9b248
Charbonneau, Patrick, Ludovic Berthier, Andrea Ninarello, Misaki Ozawa, and Sho Yaida. “Data and scripts from: Zero-temperature glass transition in two dimensions,” February 26, 2019. https://doi.org/10.7924/r46w9b248.
Charbonneau P, Berthier L, Ninarello A, Ozawa M, Yaida S. Data and scripts from: Zero-temperature glass transition in two dimensions. 2019.
Charbonneau, Patrick, et al. Data and scripts from: Zero-temperature glass transition in two dimensions. 26 Feb. 2019. Manual, doi:10.7924/r46w9b248.
Charbonneau P, Berthier L, Ninarello A, Ozawa M, Yaida S. Data and scripts from: Zero-temperature glass transition in two dimensions. 2019.

DOI

Publication Date

February 26, 2019