Attractive vs. truncated repulsive supercooled liquids : dynamics is encoded in the pair correlation function

06/03/2019
by   François P. Landes, et al.
0

We compare glassy dynamics in two liquids that differ in the form of their interaction potentials. Both systems have the same repulsive interactions but one has also an attractive part in the potential. These two systems exhibit very different dynamics despite having nearly identical pair correlation functions. We demonstrate that a properly weighted integral of the pair correlation function, which amplifies the subtle differences between the two systems, correctly captures their dynamical differences. The weights are obtained from a standard machine learning algorithm.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
09/16/2022

Learning Pair Potentials using Differentiable Simulations

Learning pair interactions from experimental or simulation data is of gr...
research
08/13/2019

Pair correlation for Dedekind zeta functions of abelian extensions

Here we study problems related to the proportions of zeros, especially s...
research
04/11/2020

Electrohydrodynamic interactions of drop pairs

We present three-dimensional simulations of the dynamics of a drop pair ...
research
01/15/2019

Second-order variational equations for spatial point processes with a view to pair correlation function estimation

Second-order variational type equations for spatial point processes are ...
research
11/19/2018

Corrected pair correlation functions for environments with obstacles

Environments with immobile obstacles or void regions that inhibit and al...
research
04/10/2018

Pair correlation functions for identifying spatial correlation in discrete domains

Identifying and quantifying spatial correlation are important aspects of...
research
02/04/2022

Direct observation of a dynamical glass transition in a nanomagnetic artificial Hopfield network

Spin glasses, generally defined as disordered systems with randomized co...

Please sign up or login with your details

Forgot password? Click here to reset