Search results for "Condensed Matter - Soft Condensed Matter"

showing 10 items of 364 documents

Dynamical Heterogeneities Below the Glass Transition

2001

We present molecular dynamics simulations of a binary Lennard-Jones mixture at temperatures below the kinetic glass transition. The ``mobility'' of a particle is characterized by the amplitude of its fluctuation around its average position. The 5% particles with the largest/smallest mean amplitude are thus defined as the relatively most mobile/immobile particles. We investigate for these 5% particles their spatial distribution and find them to be distributed very heterogeneously in that mobile as well as immobile particles form clusters. The reason for this dynamic heterogeneity is traced back to the fact that mobile/immobile particles are surrounded by fewer/more neighbors which form an ef…

PhysicsStatistical Mechanics (cond-mat.stat-mech)General Physics and AstronomyBinary numberFOS: Physical sciencesScale (descriptive set theory)Disordered Systems and Neural Networks (cond-mat.dis-nn)Condensed Matter - Disordered Systems and Neural NetworksCondensed Matter - Soft Condensed MatterKinetic energyMolecular physicsMolecular dynamicsAmplitudePosition (vector)ParticleSoft Condensed Matter (cond-mat.soft)Physical and Theoretical ChemistryGlass transitionCondensed Matter - Statistical Mechanics
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Structural quantities of quasi-two-dimensional fluids

2014

Quasi-two-dimensional fluids can be generated by confining a fluid between two parallel walls with narrow separation. Such fluids exhibit an inhomogeneous structure perpendicular to the walls due to the loss of translational symmetry. Taking the transversal degrees of freedom as a perturbation to an appropriate 2D reference fluid we provide a systematic expansion of the $m$-particle density for arbitrary $m$. To leading order in the slit width this density factorizes into the densities of the transversal and lateral degrees of freedom. Explicit expressions for the next-to-leading order terms are elaborated analytically quantifying the onset of inhomogeneity. The case $m=1$ yields the densit…

PhysicsStatistical Mechanics (cond-mat.stat-mech)General Physics and AstronomyPerturbation (astronomy)FOS: Physical sciences-Naturwissenschaftliche FakultätCondensed Matter - Soft Condensed MatterCurvaturePhysics::Fluid DynamicsClassical mechanicsPerpendicularIntegral elementSoft Condensed Matter (cond-mat.soft)Rapidityddc:500Slit widthPhysical and Theoretical ChemistryTranslational symmetryCondensed Matter - Statistical Mechanics
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Anisotropic pair correlations in binary and multicomponent hard-sphere mixtures in the vicinity of a hard wall: A combined density functional theory …

2015

The fundamental measure approach to classical density functional theory has been shown to be a powerful tool to predict various thermodynamic properties of hard-sphere systems. We employ this approach to determine not only one-particle densities but also two-particle correlations in binary and six-component mixtures of hard spheres in the vicinity of a hard wall. The broken isotropy enables us to carefully test a large variety of theoretically predicted two-particle features by quantitatively comparing them to the results of Brownian dynamics simulations. Specifically, we determine and compare the one-particle density, the total correlation functions, their contact values, and the force dis…

PhysicsStatistical Mechanics (cond-mat.stat-mech)IsotropyFOS: Physical sciencesHard spheresCondensed Matter - Soft Condensed MatterMeasure (mathematics)Brownian dynamicsCompressibilitySoft Condensed Matter (cond-mat.soft)Density functional theoryTotal correlationStatistical physicsAnisotropyCondensed Matter - Statistical Mechanics
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Shape of crossover between mean-field and asymptotic critical behavior in a three-dimensional Ising lattice

1998

Recent numerical studies of the susceptibility of the three-dimensional Ising model with various interaction ranges have been analyzed with a crossover model based on renormalization-group matching theory. It is shown that the model yields an accurate description of the crossover function for the susceptibility.

PhysicsStatistical Mechanics (cond-mat.stat-mech)Matching (graph theory)CrossoverFOS: Physical sciencesGeneral Physics and AstronomyFunction (mathematics)Condensed Matter - Soft Condensed MatterMean field theoryIsing latticeSoft Condensed Matter (cond-mat.soft)Condensed Matter::Strongly Correlated ElectronsIsing modelStatistical physicsCondensed Matter - Statistical MechanicsPhysics Letters A
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Nonlinear response of superparamagnets with finite damping: an analytical approach

2004

The strongly damping-dependent nonlinear dynamical response of classical superparamagnets is investigated by means of an analytical approach. Using rigorous balance equations for the spin occupation numbers a simple approximate expression is derived for the nonlinear susceptibility. The results are in good agreement with those obtained from the exact (continued-fraction) solution of the Fokker-Planck equation. The formula obtained could be of assistance in the modelling of the experimental data and the determination of the damping coefficient in superparamagnets.

PhysicsStatistical Mechanics (cond-mat.stat-mech)Mathematical analysisFOS: Physical sciencesCondensed Matter - Soft Condensed MatterCondensed Matter PhysicsExpression (mathematics)Electronic Optical and Magnetic MaterialsNonlinear systemClassical mechanicsSimple (abstract algebra)Soft Condensed Matter (cond-mat.soft)Fokker–Planck equationCondensed Matter - Statistical MechanicsSpin-½
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Computing absolute free energies of disordered structures by molecular simulation

2009

We present a Monte Carlo simulation technique by which the free energy of disordered systems can be computed directly. It is based on thermodynamic integration. The central idea is to construct an analytically solvable reference system from a configuration which is representative for the state of interest. The method can be applied to lattice models (e.g., the Ising model) as well as off-lattice molecular models. We focus mainly on the more challenging off-lattice case. We propose a Monte Carlo algorithm, by which the thermodynamic integration path can be sampled efficiently. At the examples of the hard sphere liquid and a hard disk solid with a defect, we discuss several properties of the …

PhysicsStatistical Mechanics (cond-mat.stat-mech)Monte Carlo method: Physics [G04] [Physical chemical mathematical & earth Sciences]General Physics and AstronomyThermodynamic integrationFOS: Physical sciencesMolecular simulationCondensed Matter - Soft Condensed Matter: Physique [G04] [Physique chimie mathématiques & sciences de la terre]Lattice (order)Soft Condensed Matter (cond-mat.soft)Free energiesIsing modelStatistical physicsPhysical and Theoretical ChemistryCondensed Matter - Statistical MechanicsMonte Carlo algorithm
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Effective Cahn-Hilliard Equation for the Phase Separation of Active Brownian Particles

2014

The kinetic separation of repulsive active Brownian particles into a dense and a dilute phase is analyzed using a systematic coarse-graining strategy. We derive an effective Cahn-Hilliard equation on large length and time scales, which implies that the separation process can be mapped onto that of passive particles. A lower density threshold for clustering is found, and using our approach we demonstrate that clustering first proceeds via a hysteretic nucleation scenario and above a higher threshold changes into a spinodal-like instability. Our results are in agreement with particle-resolved computer simulations and can be verified in experiments of artificial or biological microswimmers.

PhysicsStatistical Mechanics (cond-mat.stat-mech)NucleationFOS: Physical sciencesGeneral Physics and AstronomyCondensed Matter - Soft Condensed MatterKinetic energyInstabilitySeparation processPhase (matter)Soft Condensed Matter (cond-mat.soft)Statistical physicsCahn–Hilliard equationCluster analysisCondensed Matter - Statistical MechanicsBrownian motionPhysical Review Letters
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Crystallization of hard spheres revisited. I. Extracting kinetics and free energy landscape from forward flux sampling

2018

We investigate the kinetics and the free energy landscape of the crystallization of hard spheres from a supersaturated metastable liquid though direct simulations and forward flux sampling. In this first paper, we describe and test two different ways to reconstruct the free energy barriers from the sampled steady state probability distribution of cluster sizes without sampling the equilibrium distribution. The first method is based on mean first passage times, and the second method is based on splitting probabilities. We verify both methods for a single particle moving in a double-well potential. For the nucleation of hard spheres, these methods allow us to probe a wide range of supersatura…

PhysicsStatistical Mechanics (cond-mat.stat-mech)NucleationGeneral Physics and AstronomyEnergy landscapeSampling (statistics)FOS: Physical sciencesHard spheresCondensed Matter - Soft Condensed Matter010402 general chemistry01 natural sciences0104 chemical sciencesSurface tensionMetastability0103 physical sciencesSoft Condensed Matter (cond-mat.soft)Statistical physicsClassical nucleation theoryPhysical and Theoretical Chemistry010306 general physicsScalingCondensed Matter - Statistical Mechanics
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Active Brownian Motion Models and Applications to Ratchets

2008

We give an overview over recent studies on the model of Active Brownian Motion (ABM) coupled to reservoirs providing free energy which may be converted into kinetic energy of motion. First, we present an introduction to a general concept of active Brownian particles which are capable to take up energy from the source and transform part of it in order to perform various activities. In the second part of our presentation we consider applications of ABM to ratchet systems with different forms of differentiable potentials. Both analytical and numerical evaluations are discussed for three cases of sinusoidal, staircase-like and Mateos ratchet potentials, also with the additional loads modeled by…

PhysicsStatistical Mechanics (cond-mat.stat-mech)RatchetPerturbation (astronomy)FOS: Physical sciencesFluctuation phenomena random processes noise Brownian motion Nonlinear dynamics and chaosWhite noiseCondensed Matter - Soft Condensed MatterCondensed Matter PhysicsKinetic energyElectronic Optical and Magnetic MaterialsClassical mechanicsPhysics - Data Analysis Statistics and ProbabilityMolecular motorDirectionalitySoft Condensed Matter (cond-mat.soft)Differentiable functionBrownian motionData Analysis Statistics and Probability (physics.data-an)Condensed Matter - Statistical Mechanics
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On the theory of light scattering in molecular liquids

2001

The theory of light scattering for a system of linear molecules with anisotropic polarizabilities is considered. As a starting point for our theory, we express the result of a scattering experiment in VV and VH symmetry as dynamic correlation functions of tensorial densities $\rho_{lm}(q)$ with $l=0$ and $l=2$. $l$, $m$ denote indices of spherical harmonics. To account for all observed hydrodynamic singularities, a generalization of the theory of Schilling and Scheidsteger \cite{schilling97} for these correlation functions is presented, which is capable to describe the light scattering experiments from the liquid regime to the glassy state. As a microscopic theory it fulfills all sum rules …

PhysicsStatistical Mechanics (cond-mat.stat-mech)ScatteringFOS: Physical sciencesSpherical harmonicsLinear molecular geometryCondensed Matter - Soft Condensed MatterCondensed Matter PhysicsCoupling (probability)HelicityLight scatteringSymmetry (physics)Electronic Optical and Magnetic MaterialsSoft Condensed Matter (cond-mat.soft)Microscopic theoryCondensed Matter - Statistical MechanicsMathematical physics
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