most citedStarting from the amorphous ground state: linking landscape thermodynamics to slow dynamics and crossover

2 citations · 3 across the 2 of their papers we have counts for

collaborators

7 papers

cond-mat.dis-nn20261 cited

Transmutation-accelerated sampling method for multi-component ZrCu(Al) metallic glasses

Filip Kaskosz, Rene Alvarez-Donado, Mikko Alava +2

We investigate multi-component metallic glass systems using a hybrid Molecular Dynamics (MD) and Variance-Constrained Semi-Grand Canonical approach. This method enables us to gener…

cond-mat.soft20262 cited

Starting from the amorphous ground state: linking landscape thermodynamics to slow dynamics and crossover

Anshul D. S. Parmar, Simon G. Kellers, Andreas Heuer

A microscopic understanding of low-temperature thermodynamics and its relation to dynamical features such as a fragile-to-strong crossover (FSC) remains a central challenge in glas…

cond-mat.mtrl-sci2025

Recent Advances in Metallic Glasses

Silvia Bonfanti, Ralf Busch, Jesper Byggmästar +12

This paper reviews recent advances in the field of metallic glasses, focusing on the development of novel experimental techniques and in silico models. We discuss progress in exper…

cond-mat.dis-nn2025

Fracture toughness and auxeticity in disordered metamaterials

Hannes Holey, Andrea Lorenzo Henri Sergio Detry, Silvia Bonfanti +6

Auxetic metamaterials are commonly thought to exhibit favorable mechanical properties, notably high energy absorption. Here we investigate disordered metamaterials obtained from ra…

cond-mat.mtrl-sci2025

Efficient training of machine learning potentials for metallic glasses: CuZrAl validation

Antoni Wadowski, Anshul D. S. Parmar, Filip Kaśkosz +4

Interatomic potentials are key to uncovering microscopic structure-property relationships, essential for multiscale simulations and high-throughput experiments. For metallic glasse…

cond-mat.mtrl-sci2025

Growth and prediction of plastic strain in metallic glasses

Tero Mäkinen, Anshul D. S. Parmar, Silvia Bonfanti +1

Predicting the failure and plasticity of solids remains a longstanding challenge, with broad implications for materials design and functional reliability. Disordered solids like me…