Search results for "Statistical"

showing 10 items of 4960 documents

Dragging a Polymer Chain into a Nanotube and Subsequent Release

2008

We present a scaling theory and Monte Carlo (MC) simulation results for a flexible polymer chain slowly dragged by one end into a nanotube. We also describe the situation when the completely confined chain is released and gradually leaves the tube. MC simulations were performed for a self-avoiding lattice model with a biased chain growth algorithm, the pruned-enriched Rosenbluth method. The nanotube is a long channel opened at one end and its diameter $D$ is much smaller than the size of the polymer coil in solution. We analyze the following characteristics as functions of the chain end position $x$ inside the tube: the free energy of confinement, the average end-to-end distance, the averag…

chemistry.chemical_classificationLattice model (finance)NanotubeCritical distanceMaterials scienceStatistical Mechanics (cond-mat.stat-mech)Polymers and PlasticsOrganic ChemistryMonte Carlo methodFOS: Physical sciencesPolymerCondensed Matter - Soft Condensed MatterMolecular physicsInorganic ChemistrychemistryChain (algebraic topology)Phase (matter)Materials ChemistrySoft Condensed Matter (cond-mat.soft)Tube (fluid conveyance)Condensed Matter - Statistical MechanicsMacromolecules
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Dynamics of Glassy Polymer Melts in Confined Geometry: A Monte Carlo Simulation

1996

Dynamic properties of a dense polymer melt confined between two hard walls are investigated over a wide range of temperatures by dynamic Monte Carlo simulation. The temperature interval ranges from the ordinary liquid to the strongly supercooled melt. The influence of temperature, density and confinement on the polymer dynamics is studied by various mean-square displacements, structural relaxation functions and quantities derived from them (relaxation times, apparent diffusion coefficients, monomer relaxation rates), yielding the following results: The motion of the monomers and polymers close to the walls is enhanced in parallel, but reduced in perpendicular direction. This dynamic anisotr…

chemistry.chemical_classificationLength scaleMaterials scienceCondensed matter physicsDiffusionMonte Carlo methodGeneral EngineeringThermodynamicsStatistical and Nonlinear PhysicsPolymerCondensed Matter::Soft Condensed MatterchemistryRadius of gyrationRelaxation (physics)AnisotropySupercoolingJournal de Physique I
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GLASS TRANSITION IN THIN POLYMER FILMS: A MOLECULAR DYNAMICS STUDY

2002

A melt of nonentangled polymer chains confined between two smooth and purely repulsive walls is studied for various film thicknesses D and temperatures. The dynamics of the supercooled films is qualitatively identical to that of the bulk, but the walls lead to faster relaxation. To quantify this observation we analyze the data by the mode-coupling theory (MCT) of the glass transition. We find that the critical temperature of MCT, Tc(D), decreases with D and that T - Tc(D) is a relevant temperature scale. The static structure factor and dynamic correlation functions at intermediate times coincide with bulk behavior when compared to the same T - Tc(D).

chemistry.chemical_classificationMaterials scienceCondensed matter physicsScale of temperatureGeneral Physics and AstronomyStatistical and Nonlinear PhysicsPolymerComputer Science ApplicationsCondensed Matter::Soft Condensed MatterMolecular dynamicsComputational Theory and MathematicschemistryRelaxation (physics)Glass transitionSupercoolingStructure factorMathematical PhysicsInternational Journal of Modern Physics C
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Hybrid silicon on insulator/polymer electro-optical intensity modulator operating at 780  nm

2014

Currently inorganic materials prevail as the nonlinear active medium for light modulation in electro-optical (EO) device technology. A recent promising trend is to consider organic nonlinear optical materials for application in EO modulators due to their multiple advantages including low costs and high EO coefficients. In this paper, we proposed a new type of polymer EO modulator whose fabrication is compatible with the currently used silicon on insulator technology. Our numerical optimization of the proposed structure demonstrates that it is theoretically possible to achieve a half-wave voltage as low as 1.56 V for a 1 cm long modulator structure operating at 780 nm. Based on the results o…

chemistry.chemical_classificationMaterials scienceFabricationbusiness.industrySilicon on insulatorStatistical and Nonlinear PhysicsPolymerOrganic nonlinear optical materialsAtomic and Molecular Physics and OpticsNonlinear systemchemistry.chemical_compoundchemistryWavelength-division multiplexingOptoelectronicsbusinessRefractive indexVoltageJournal of the Optical Society of America B
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Simulation of Dense Polymer Systems in Two and Three Dimensions

1991

Dense polymer systems are modeled by self- and mutually avoiding walks on lattices. Both simple models where the step length is one lattice spacing and more complicated models where the step length is distinctly longer and may fluctuate (“bond fluctuation model”) are discussed, and it is shown that the computer simulation of such models gives useful insight to understand the thermodynamic phase behavior and the relaxational dynamics of dense polymer solutions and polymer melts. The huge demands in computing power needed for a successful simulation of such systems can be covered by parallel computers such as the multitransputer facility of the University of Mainz.

chemistry.chemical_classificationMaterials sciencePhase (waves)General Physics and AstronomyStatistical and Nonlinear PhysicsPolymerStride lengthComputer Science ApplicationsPower (physics)Lattice constantComputational Theory and MathematicschemistrySimple (abstract algebra)Statistical physicsBond fluctuation modelMathematical PhysicsInternational Journal of Modern Physics C
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Dynamics of phase separation and critical phenomena in polymer mixtures

1987

The phenomenological mean-field theory for statics and dynamics of polymer mixtures is described, generalizing the approaches of Flory-Huggins, Cahn-Hilliard and de Gennes. Predictions are made for critical behavior, spinodal decomposition and homogeneous nucleation. The validity of the mean-field approximations is discussed with Ginzburg criteria. The results of the theory are compared to computer simulations and recent experiments.

chemistry.chemical_classificationMaterials sciencePolymers and PlasticsSpinodal decompositionCritical phenomenaNucleationThermodynamicsPolymerCondensed Matter::Soft Condensed MatterColloid and Surface ChemistrychemistryCritical point (thermodynamics)HomogeneousMaterials ChemistryStatistical physicsPhysical and Theoretical ChemistryStaticsColloid and Polymer Science
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Grafted polymer layers under variable solvent conditions: A Monte Carlo simulation

1993

Polymer chains anchored with one end at a hard wall under variable solvent conditions are investigated by Monte Carlo simulations using the bond- fluctuation model. Detail information on the structural properties are obtained above, at, and below the Θ-point and discussed in terms of the appropriate theories. In particular, the scaling of the brush thickness is formulated and verified by the simulation data. For the dynamics at the Θ-point, both the relaxation time of the chain configuration and the mean-square time displacement are studied. At temperatures distinctly below the Θ-point, we find that the layer develops considerable lateral inhomogeneity in its density, which has not been pre…

chemistry.chemical_classificationMaterials sciencePolymers and PlasticsTime displacementOrganic ChemistryMonte Carlo methodMechanicsPolymerCondensed Matter PhysicsSolventChain (algebraic topology)chemistryMaterials ChemistryStatistical physicsScalingVariable (mathematics)Makromolekulare Chemie. Macromolecular Symposia
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Reduction of the glass transition temperature in polymer films: A molecular-dynamics study

2001

We present results of molecular dynamics (MD) simulations for a non-entangled polymer melt confined between two completely smooth and repulsive walls, interacting with inner particles via the potential $U_{\rm wall}\myeq (\sigma/z)^9$, where $z \myeq |z_{\rm particle}-z_{\rm wall}|$ and $\sigma$ is (roughly) the monomer diameter. The influence of this confinement on the dynamic behavior of the melt is studied for various film thicknesses (wall-to-wall separations) $D$, ranging from about 3 to about 14 times the bulk radius of gyration. A comparison of the mean-square displacements in the film and in the bulk shows an acceleration of the dynamics due to the presence of the walls. %Consistent…

chemistry.chemical_classificationMaterials scienceReduction (recursion theory)Statistical Mechanics (cond-mat.stat-mech)Condensed matter physicsbusiness.industryFOS: Physical sciencesPolymerCondensed Matter - Soft Condensed MatterCoupling (probability)Molecular dynamicsOpticschemistryRadius of gyrationSoft Condensed Matter (cond-mat.soft)ParticlebusinessGlass transitionCondensed Matter - Statistical MechanicsPolymer meltPhysical Review E
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Monte Carlo simulation of the glass transition in polymer melts: An application of MCT

1995

Abstract This paper reviews the results of a large scale Monte Carlo simulation for the dynamics of a supercooled polymer melt. The dynamics of the melt was studied by means of the time evolution of the incoherent intermediate scattering function φs q(t), which was monitored over seven decades in time. In an intermediate time window it is possible to describe the decay of φs q(t) quantitatively in the framework of mode-coupling theory, provided the extended version of the theory is used.

chemistry.chemical_classificationMaterials scienceScale (ratio)Applied MathematicsMonte Carlo methodTime evolutionGeneral Physics and AstronomyThermodynamicsTransportationStatistical and Nonlinear PhysicsPolymerCondensed Matter::Soft Condensed MatterchemistryTime windowsDynamic Monte Carlo methodStatistical physicsGlass transitionSupercoolingMathematical PhysicsTransport Theory and Statistical Physics
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Structure of bottle-brush brushes under good solvent conditions: a molecular dynamics study.

2011

We report a simulation study for bottle-brush polymers grafted on a rigid backbone. Using a standard coarse-grained bead-spring model extensive molecular dynamics simulations for such macromolecules under good solvent conditions are performed. We consider a broad range of parameters and present numerical results for the monomer density profile, density of the untethered ends of the grafted flexible backbones and the correlation function describing the range that neighboring grafted bottle-brushes are affected by the presence of the others due to the excluded volume interactions. The end beads of the flexible backbones of the grafted bottle-brushes do not access the region close to the rigid…

chemistry.chemical_classificationMaterials scienceStatistical Mechanics (cond-mat.stat-mech)PolymersMolecular ConformationFOS: Physical sciencesPolymerCondensed Matter - Soft Condensed MatterMolecular Dynamics SimulationCondensed Matter PhysicsSolventMolecular dynamicsCorrelation function (statistical mechanics)chemistry.chemical_compoundMonomerchemistryChemical physicsExcluded volumeSide chainSolventsSoft Condensed Matter (cond-mat.soft)Quantum TheoryGeneral Materials ScienceCondensed Matter - Statistical MechanicsMacromoleculeJournal of physics. Condensed matter : an Institute of Physics journal
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