Simulation of a Single Polymer Chain in Solution by Combining Lattice Boltzmann and Molecular Dynamics
arXiv:cond-mat/9905183 · doi:10.1063/1.480156
Abstract
In this paper we establish a new efficient method for simulating polymer-solvent systems which combines a lattice Boltzmann approach for the fluid with a continuum molecular dynamics (MD) model for the polymer chain. The two parts are coupled by a simple dissipative force while the system is driven by stochastic forces added to both the fluid and the polymer. Extensive tests of the new method for the case of a single polymer chain in a solvent are performed. The dynamic and static scaling properties predicted by analytical theory are validated. In this context, the influence of the finite size of the simulation box is discussed. While usually the finite size corrections scale as L^{-1} (L denoting the linear dimension of the box), the decay rate of the Rouse modes is only subject to an L^{-3} finite size effect. Furthermore, the mapping to an existing MD simulation of the same system is done so that all physical input values for the new method can be derived from pure MD simulation. Both methods can thus be compared quantitatively, showing that the new method allows for much larger time steps. Comparison of the results for both methods indicates systematic deviations due to non-perfect match of the static chain conformations.
17 pages, 12 figures, submitted to J. Chem. Phys
Cited by in corpus (89)
- Lattice Boltzmann simulations of soft matter systems
- ESPResSo 4.0 -- An Extensible Software Package for Simulating Soft Matter Systems
- Integration Schemes for Dissipative Particle Dynamics Simulations: From Softly Interacting Systems Towards Hybrid Models
- Multi-Particle Collision Dynamics -- a Particle-Based Mesoscale Simulation Approach to the Hydrodynamics of Complex Fluids
- Dynamics of short polymer chains in solution
- Semidilute Polymer Solutions at Equilibrium and under Shear Flow
- Statistical Mechanics of the Fluctuating Lattice Boltzmann Equation
- The Hydrodynamic Interaction in Polymer Solutions Simulated with Dissipative Particle Dynamics
- Electrophoresis of colloidal dispersions in the low-salt regime
- A new model for simulating colloidal dynamics
- Automatic Coarse Graining of Polymers
- Screening of Hydrodynamic Interactions in Semidilute Polymer Solutions: A Computer Simulation Study
- Multiscale coupling of molecular dynamics and hydrodynamics: application to DNA translocation through a nanopore
- Importance of hydrodynamic shielding for the dynamic behavior of short polyelectrolyte chains
- Fluctuating hydrodynamic modelling of fluids at the nanoscale
- Lattice Boltzmann Methods and Active Fluids
- A Macromolecule in a Solvent: Adaptive Resolution Molecular Dynamics Simulation
- Translational Diffusion of Polymer Chains with Excluded Volume and Hydrodynamic Interactions by Brownian Dynamics Simulation
- Electrophoretic mobility of a charged colloidal particle: A computer simulation study
- Autonomous Motility of Active Filaments due to Spontaneous Flow-Symmetry Breaking
- Optimisation of a Brownian dynamics algorithm for semidilute polymer solutions
- Simulating Colloid Hydrodynamics with Lattice Boltzmann
- Migration of semiflexible polymers in microcapillary flow
- Implicit and explicit solvent models for the simulation of a single polymer chain in solution: Lattice Boltzmann vs Brownian dynamics
- Mesoscale simulations of polymer dynamics in microchannel flows
- Universal dynamics of dilute and semidilute solutions of flexible linear polymers
- Lattice-Boltzmann Hydrodynamics of Anisotropic Active Matter
- Mesoscale Structures at Complex Fluid-Fluid Interfaces: a Novel Lattice Boltzmann / Molecular Dynamics Coupling
- The Raspberry Model for Hydrodynamic Interactions Revisited. I. Periodic Arrays of Spheres and Dumbbells
- A Lattice-Boltzmann method for the simulation of transport phenomena in charged colloids
- A Numerical Model for Brownian Particles Fluctuating in Incompressible Fluids
- Combining Molecular Dynamics with Lattice-Boltzmann: A Hybrid Method for the Simulation of (Charged) Colloidal Systems
- Nanoparticle Transport in Cellular Blood Flow
- ESPResSo++ 2.0: Advanced methods for multiscale molecular simulation
- Dynamics and Scaling of 2D Polymers in a Dilute Solution
- Chain deformation helps translocation
- Colloidal electrophoresis: Scaling analysis, Green-Kubo relation, and numerical results
- Comparison of Molecular Dynamics with Hybrid Continuum-Molecular Dynamics for a Single Tethered Polymer in a Solvent
- Hydrodynamics strongly affect the dynamics of colloidal gelation but not gel structure
- Electrophoretic Properties of Highly Charged Colloids: A Hybrid MD/LB Simulation Study
- Wetting gradient induced separation of emulsions: A combined experimental and lattice Boltzmann computer simulation study
- Brownian dynamics of a microswimmer
- Multiscale method based on coupled lattice-Boltzmann and Langevin-dynamics for direct simulation of nanoscale particle/polymer suspensions in complex flows
- A comparison of the static and dynamic properties of a semi-flexible polymer using lattice-Boltzmann and Brownian dynamics simulations
- Capillary-bridge Forces Between Solid Particles: Insights from Lattice Boltzmann Simulations
- A unified operator splitting approach for multi-scale fluid-particle coupling in the lattice Boltzmann method
- Nanoparticle diffusion in sheared cellular blood flow
- The Raspberry Model for Hydrodynamic Interactions Revisited. II. The Effect of Confinement
- Mesoscale modelling of polyelectrolyte electrophoresis
- Computational modeling of active deformable membranes embedded in 3D flows
- Lattice Boltzmann simulation of deformable fluid-filled bodies: progress and perspectives
- Frequency-dependent magnetic susceptibility of magnetic nanoparticles in a polymer solution: a simulation study
- Two-way coupling of FENE dumbbells with a turbulent shear flow
- A unified analysis of nano-to-microscale particle dispersion in tubular blood flow
- Chain Conformations and Phase Separation in Polymer Solutions with Varying Solvent Quality
- Heterogeneous partition of cellular blood-borne nanoparticles through microvascular bifurcations
- The Influence of Motility on Bacterial Accumulation in a Microporous Channel
- Electrophoresis of Janus Particles: a Molecular Dynamics simulation study
- Limiting Spurious Flow in Simulations of Electrokinetic Phenomena
- Coarse-Grained Molecular Simulation of Extracellular Vesicles Squeezing for Drug Loading
- Direct numerical simulations for non-Newtonian rheology of concentrated particle dispersions
- Lattice-Boltzmann Simulations of Microswimmer-Tracer Interactions
- The influence of charged-induced variations in the local permittivity on the static and dynamic properties of polyelectrolyte solutions
- Brownian dynamics simulations of planar mixed flows of polymer solutions at finite concentrations
- Structure and Dynamics of Solvated Polymers near a Silica Surface: On the Different Roles Played by Solvent
- A Computational Model for Bacterial Run-and-Tumble Motion
- Easier sieving through narrower pores: fluctuations and barrier crossing in flow-driven polymer translocation
- Computer Simulations of Charged Colloids in Alternating Electric Fields
- Dynamics of Strongly Deformed Polymers in Solution
- Hydrodynamic forces on steady and oscillating porous particles
- A Discrete Ion Stochastic Continuum Overdamped Solvent Algorithm for Modeling Electrolytes
- Thermal diffusion by Brownian motion induced fluid stress
- Optimizing end-labeled free-solution electrophoresis by increasing the hydrodynamic friction of the drag-tag
- Multi-Particle Collision Dynamics for a coarse-grained model of soft colloids
- The Raspberry model for protein-like particles: ellipsoids and confinement in cylindrical pores
- Capture and translocation of a rod-like molecule by a nanopore: orientation, charge distribution and hydrodynamics
- Systematic derivation of hydrodynamic equations for viscoelastic phase separation
- An improved dissipative coupling scheme for a system of Molecular Dynamics particles interacting with a Lattice Boltzmann fluid
- Numerical simulation method for Brownian particles dispersed in incompressible fluids
- Universal scaling and characterisation of gelation in associative polymer solutions
- Modeling the Current Modulation of Bundled DNA Structures in Nanopores
- On the importance of hydrodynamic interactions in polyelectrolyte electrophoresis
- A Dissipative-Particle-Dynamics Model for Simulating Dynamics of Charged Colloid
- Polymer Solutions
- Regularized Fluctuating Lattice Boltzmann Model
- Polyelectrolytes polarization in non-uniform electric fields
- Two-fluid kinetic theory for dilute polymer solutions
- Hydrodynamic Correlations slow down Crystallization of Soft Colloids
- Electrokinetic Lattice Boltzmann solver coupled to Molecular Dynamics: application to polymer translocation