Search results for "pacs:61.20.Ja"

showing 3 items of 3 documents

Intermolecular structure factors of macromolecules in solution: Integral equation results

1999

The inter-molecular structure of semidilute polymer solutions is studied theoretically. The low density limit of a generalized Ornstein-Zernicke integral equation approach to polymeric liquids is considered. Scaling laws for the dilute-to-semidilute crossover of random phase (RPA) like structure are derived for the inter-molecular structure factor on large distances when inter-molecular excluded volume is incorporated at the microscopic level. This leads to a non-linear equation for the excluded volume interaction parameter. For macromolecular size-mass scaling exponents, $\nu$, above a spatial-dimension dependent value, $\nu_c=2/d$, mean field like density scaling is recovered, but for $\n…

Quantitative Biology::BiomoleculesMonte Carlo methodIntermolecular forcepacs:61.20.JaFOS: Physical sciencesCondensed Matter - Soft Condensed MatterFlory–Huggins solution theoryIntegral equationCondensed Matter::Soft Condensed Matterpacs:61.25.HqExcluded volumeExponentSoft Condensed Matter (cond-mat.soft)ddc:530Statistical physicspacs:61.12.ExStructure factorScalingMathematics
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Field-induced ordering phenomena and non-local elastic compliance in two-dimensional colloidal crystals

2008

Ordering phenomena in colloidal dispersions exposed to external one-dimensional, periodic fields or under confinement are studied systematically by Monte Carlo computer simulations. Such systems are useful models for the study of monolayers on a substrate. We find that the interaction with a substrate potential completely changes the miscibility of a binary, hard disc mixture at low external field amplitudes. The underlying ordering mechanisms leading to this laser-induced de-mixing differ, depending on which components interact with the substrate potential. Generic effects of confinement on crystalline order in two dimensions are studied in a model system of point particles interacting via…

Phase transitionField (physics)pacs:and superpfluctuationsVideo microscopypacs:62.10.+s M2 dimensionspacs:75.50.Mm MCrystalpacs:75.20.-g Dpacs:64.75.-g PsuspensionsGeneral Materials Scienceddc:530Boundary value problemSoft matterElastic moduluspacs:61.20.Ja Csoft matterCondensed matter physicsChemistryphase-transitionsmodel colloidsdynamicsColloidal crystalCondensed Matter Physicspacs:paramagnetpotentialsmixtureshardpacs:82.70.Dd C
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Static Properties of a Simulated Supercooled Polymer Melt: Structure Factors, Monomer Distributions Relative to the Center of Mass, and Triple Correl…

2004

We analyze structural and conformational properties in a simulated bead-spring model of a non-entangled, supercooled polymer melt. We explore the statics of the model via various structure factors, involving not only the monomers, but also the center of mass (CM). We find that the conformation of the chains and the CM-CM structure factor, which is well described by a recently proposed approximation [Krakoviack et al., Europhys. Lett. 58, 53 (2002)], remain essentially unchanged on cooling toward the critical glass transition temperature of mode-coupling theory. Spatial correlations between monomers on different chains, however, depend on temperature, albeit smoothly. This implies that the g…

MODE-COUPLING THEORYMaterials scienceGLASS-TRANSITIONRELAXATION REGIMEpacs:61.20.JaThermodynamicsFOS: Physical sciencesCondensed Matter - Soft Condensed Matter01 natural sciencesTriple correlation010305 fluids & plasmasCOHERENT SCATTERINGchemistry.chemical_compoundHOVE CORRELATION-FUNCTIONS0103 physical sciencesddc:530010306 general physicsSupercoolingStaticsCHAIN-FOLDED STRUCTURESchemistry.chemical_classificationQuantitative Biology::BiomoleculesPolymerMOLECULAR-DYNAMICS SIMULATIONPACS: 61.25.Hq 61.20.JaCondensed Matter::Soft Condensed MatterMonomerchemistrypacs:61.25.HqLENNARD-JONES SYSTEMBETA-RELAXATIONSoft Condensed Matter (cond-mat.soft)PHASE-TRANSITIONSCenter of massGlass transitionStructure factor[PHYS.COND.CM-SCM]Physics [physics]/Condensed Matter [cond-mat]/Soft Condensed Matter [cond-mat.soft]
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