Low temperature nucleation rate calculations using the N-Fold way

Fuente: arXiv
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Main Authors: Ettori, Federico, Mandal, Dipanjan, Quigley, David
Format: Preprint
Published: 2024
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author Ettori, Federico
Mandal, Dipanjan
Quigley, David
author_facet Ettori, Federico
Mandal, Dipanjan
Quigley, David
contents We present a numerical study to determine nucleation rates for magnetisation reversal within the Ising model (lattice gas model) in the low-temperature regime, a domain less explored in previous research. To achieve this, we implemented the N-Fold way algorithm, a well-established method for low-temperature simulations, alongside a novel, highly efficient cluster identification algorithm. Our method can access nucleation rates up to 50 orders of magnitude lower than previously reported results. We examine three cases: homogeneous pure system, system with static impurities, and system with mobile impurities, where impurities are defined as sites with zero interactions with neighbouring spins (spin value of impurities is set to 0). Classical nucleation theory holds across the entire temperature range studied in the paper, for both the homogeneous system and the static impurity case. However, in the case of mobile impurities, the umbrella sampling technique seems ineffective at low mobility values. These findings provide valuable insights into nucleation phenomena at low temperatures, contributing to theoretical and experimental understanding.
format Preprint
id arxiv_https___arxiv_org_abs_2412_19278
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Low temperature nucleation rate calculations using the N-Fold way
Ettori, Federico
Mandal, Dipanjan
Quigley, David
Statistical Mechanics
We present a numerical study to determine nucleation rates for magnetisation reversal within the Ising model (lattice gas model) in the low-temperature regime, a domain less explored in previous research. To achieve this, we implemented the N-Fold way algorithm, a well-established method for low-temperature simulations, alongside a novel, highly efficient cluster identification algorithm. Our method can access nucleation rates up to 50 orders of magnitude lower than previously reported results. We examine three cases: homogeneous pure system, system with static impurities, and system with mobile impurities, where impurities are defined as sites with zero interactions with neighbouring spins (spin value of impurities is set to 0). Classical nucleation theory holds across the entire temperature range studied in the paper, for both the homogeneous system and the static impurity case. However, in the case of mobile impurities, the umbrella sampling technique seems ineffective at low mobility values. These findings provide valuable insights into nucleation phenomena at low temperatures, contributing to theoretical and experimental understanding.
title Low temperature nucleation rate calculations using the N-Fold way
topic Statistical Mechanics
url https://arxiv.org/abs/2412.19278