activity
20242026
most citedFurther testing the validity of generalized heterogeneous-elasticity theory for low-frequency excitations in structural glasses

1 citations · 1 across the 4 of their papers we have counts for

collaborators

9 papers

cond-mat.stat-mech2026

Theory of the -Relaxation Beyond Mode-Coupling Theory: A Microscopic Treatment

Corentin C. L. Laudicina, Liesbeth M. C. Janssen, Grzegorz Szamel

We develop a systematic extension of mode-coupling theory (MCT) that incorporates critical dynamical fluctuations. Starting from a microscopic diagrammatic theory, we identify domi…

cond-mat.soft2026

Microscopic Theory of a Fluctuation-Induced Dynamical Crossover in Supercooled Liquids

Corentin C. L. Laudicina, Liesbeth M. C. Janssen, Grzegorz Szamel

Mean-field theories of the glass transition predict a phase transition to a dynamically arrested state, yet no such transition is observed in experiments or simulations of finite-d…

cond-mat.dis-nn20261 cited

Further testing the validity of generalized heterogeneous-elasticity theory for low-frequency excitations in structural glasses

Walter Schirmacher, Matteo Paoluzzi, Felix Cosmin Mocanu +4

We summarize the salient features of our theory of non-phononic vibrational excitations in glasses [W. Schirmacher et al., Nature Comm. 15, 3107 (2024)]. Next, we provide further e…

cond-mat.stat-mech2026

Machine-learning-derived protocols for information-based work extraction from active particles

Grzegorz Szamel

We propose and analyze a process that extracts useful work from a single active particle maintained at constant temperature in a harmonic potential by measuring the relative sign o…

cond-mat.dis-nn2025

Defects, Sound Damping, and the Boson Peak in Amorphous Solids

Elijah Flenner, Grzegorz Szamel

Two nearly universal and anomalous properties of glasses, the peak in the specific heat and plateau of the thermal conductivity, occur around the same temperature. This coincidence…

cond-mat.dis-nn2024

Self-consistent theory for sound propagation in a simple model of a disordered, harmonic solid

Grzegorz Szamel

We present a self-consistent theory for sound propagation in a simple model of a disordered solid. The solid is modeled as a collection of randomly distributed particles connected…