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Approach to Hyperuniformity in a Metallic Glass-Forming Material Exhibiting a Fragile to Strong Glass Transition

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arxiv 2302.01429 v3 pith:KLLPUCUN submitted 2023-02-02 cond-mat.soft cond-mat.mtrl-sci

classification cond-mat.softcond-mat.mtrl-sci
keywords metallicglassliquidliquidsmaterialcrystallinedescribingdynamics
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abstract

We investigate a metallic glass-forming (GF) material (Al90Sm10) exhibiting a fragile-strong (FS) glass-formation by molecular dynamics simulation to better understand this highly distinctive pattern of glass-formation in which many of the usual phenomenological relations describing relaxation times and diffusion of OGF liquids no longer apply, and where instead genuine thermodynamic features are observed in response functions and little thermodynamic signature is exhibited at the glass transition temperature, Tg. Given the many unexpected similarities between the thermodynamics and dynamics of this metallic GF material with water, we first focus on the anomalous static scattering in this liquid, following recent studies on water, silicon and other FS GF liquids. In particular, we quantify the 'hyperuniformity index' H of our liquid which provides a quantitative measure of molecular 'jamming'. To gain insight into the T-dependence and magnitude of H, we also estimated another more familiar measure of particle localization, the Debye-Waller parameter $<u^2>$ describing the mean-square particle displacement on a timescale on the order of the fast relaxation time, and we also calculate H and $<u^2>$ for heated crystalline Cu. This comparative analysis between H and $<u^2>$ for crystalline and metallic glass materials allows us to understand the critical value of H on the order of $10^{-3}$ as being analogous to the Lindemann criterion for both the melting of crystals and the 'softening' of glasses. We further interpret the emergence of FS GF and liquid-liquid phase separation in this class of liquids to arise from a cooperative assembly process in the GF liquid.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Active Hyperuniform Networks of Chiral Magnetic Micro-Robotic Spinners

    cond-mat.soft 2025-05 conditional novelty 7.0 of 10

    Magnetic micro-robotic spinners with three binding sites self-assemble into stable disordered hyperuniform networks at up to about a thousand robots.

  2. Ultra-Efficient Reconstruction of Anisotropic Hyperuniform Continuous Random Fields in 2D and 3D via Generalized Spectral Filtering

    cond-mat.mtrl-sci 2025-09 conditional novelty 4.0 of 10

    Hyperuniform continuous random fields with tunable anisotropy can be generated in a single FFT pass by prescribing a superellipse spectral mask.

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