Linear Viscoelasticity of Semidilute Unentangled Flexible Polymer Solutions

Fuente: arXiv
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Main Authors: Varakhedkar, Amit, Sunthar, P., Prakash, J. Ravi
Format: Preprint
Published: 2026
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author Varakhedkar, Amit
Sunthar, P.
Prakash, J. Ravi
author_facet Varakhedkar, Amit
Sunthar, P.
Prakash, J. Ravi
contents The linear viscoelastic response of flexible polymer solutions in the dilute and semidilute unentangled regimes is investigated using Brownian dynamics simulations. The relaxation modulus and dynamic moduli are computed over a wide range of concentrations and chain discretizations for both $θ$ and good solvents to establish the connection between microscopic chain dynamics and macroscopic viscoelastic response. In the dilute limit, the simulations recover the expected Zimm-like behavior with solvent-quality-dependent power-law scaling in the intermediate time and frequency regimes, while in the semidilute unentangled regime a systematic crossover to Rouse-like dynamics is observed with increasing concentration due to the screening of excluded volume and hydrodynamic interactions. Comparison with experimental measurements shows excellent agreement for the storage modulus across both concentration regimes and for the loss modulus at low and intermediate frequencies, with deviations at high frequencies as a result of finite-chain discretization effects. These finite-chain length effects are systematically accounted for using the successive fine-graining technique, enabling quantitative prediction of the loss modulus in the infinite-chain length limit.
format Preprint
id arxiv_https___arxiv_org_abs_2604_05338
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Linear Viscoelasticity of Semidilute Unentangled Flexible Polymer Solutions
Varakhedkar, Amit
Sunthar, P.
Prakash, J. Ravi
Soft Condensed Matter
Statistical Mechanics
The linear viscoelastic response of flexible polymer solutions in the dilute and semidilute unentangled regimes is investigated using Brownian dynamics simulations. The relaxation modulus and dynamic moduli are computed over a wide range of concentrations and chain discretizations for both $θ$ and good solvents to establish the connection between microscopic chain dynamics and macroscopic viscoelastic response. In the dilute limit, the simulations recover the expected Zimm-like behavior with solvent-quality-dependent power-law scaling in the intermediate time and frequency regimes, while in the semidilute unentangled regime a systematic crossover to Rouse-like dynamics is observed with increasing concentration due to the screening of excluded volume and hydrodynamic interactions. Comparison with experimental measurements shows excellent agreement for the storage modulus across both concentration regimes and for the loss modulus at low and intermediate frequencies, with deviations at high frequencies as a result of finite-chain discretization effects. These finite-chain length effects are systematically accounted for using the successive fine-graining technique, enabling quantitative prediction of the loss modulus in the infinite-chain length limit.
title Linear Viscoelasticity of Semidilute Unentangled Flexible Polymer Solutions
topic Soft Condensed Matter
Statistical Mechanics
url https://arxiv.org/abs/2604.05338