Models for polymer dynamics from dimensionality reduction techniques

Fuente: arXiv
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Hauptverfasser: Bement, Phillip, Rottler, Joerg
Format: Preprint
Veröffentlicht: 2025
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author Bement, Phillip
Rottler, Joerg
author_facet Bement, Phillip
Rottler, Joerg
contents Polymer dynamics is analyzed through the lens of linear dimensionality reduction methods, in particular principal (PCA) and time-lagged independent component analysis (tICA). For a polymer undergoing ideal Rouse dynamics, the slow modes identified by these transformations coincide with the conventional Rouse modes. When applied to the Fourier modes of the segment density, we show that tICA generates dynamics equivalent to dynamic self-consistent field theory (D-SCFT) with a wavevector-dependent Onsager coefficient and a free energy functional subject to the random phase approximation (RPA). We then introduce a hidden variable method and a time-local approach to include temporal memory in the tICA-generated dynamics, and generalize it to construct continuum models for the nonequilibrium case of spinodal decomposition of a symmetric diblock copolymer melt.
format Preprint
id arxiv_https___arxiv_org_abs_2508_06717
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Models for polymer dynamics from dimensionality reduction techniques
Bement, Phillip
Rottler, Joerg
Soft Condensed Matter
Polymer dynamics is analyzed through the lens of linear dimensionality reduction methods, in particular principal (PCA) and time-lagged independent component analysis (tICA). For a polymer undergoing ideal Rouse dynamics, the slow modes identified by these transformations coincide with the conventional Rouse modes. When applied to the Fourier modes of the segment density, we show that tICA generates dynamics equivalent to dynamic self-consistent field theory (D-SCFT) with a wavevector-dependent Onsager coefficient and a free energy functional subject to the random phase approximation (RPA). We then introduce a hidden variable method and a time-local approach to include temporal memory in the tICA-generated dynamics, and generalize it to construct continuum models for the nonequilibrium case of spinodal decomposition of a symmetric diblock copolymer melt.
title Models for polymer dynamics from dimensionality reduction techniques
topic Soft Condensed Matter
url https://arxiv.org/abs/2508.06717