Publication | Closed Access
Scattering Function for Branched Wormlike Chains
27
Citations
50
References
2015
Year
New Hybrid FunctionEngineeringPhysicsBranched Wormlike ChainsNatural SciencesMany-body ProblemParticle PhysicsWave ScatteringQuantum Field TheoryHybrid FunctionUniform SubunitsComputational MechanicsTheta FunctionNeutron ScatteringBiophysicsMultiscale Modeling
Wormlike or threadlike structures with local cylindrical geometry are abundantly found in nature and technical products. A thorough structural characterization in the bulk for a whole ensemble, however, is difficult. The inherent semiordered nature of the tortuous large-scale structure and especially the quantification of branching renders an assessment difficult. In the present work we introduce a hybrid function expressing the scattering intensities for X-rays, neutrons, or light in the small-angle regime for this system. The function is termed "hybrid" because it employs terms from different approaches. The large-scale structure is described via a Guinier term as well as a concomitant power-law expression in momentum transfer q taken from the so-called unified function. The local cylindrical shape, however, is taken into account through a form factor for cylinders from rigid-body modeling. In principle, the latter form factor can be replaced by an expression for any other regular body so that the new hybrid function is a versatile tool for studying hierarchical structures assembled from uniform subunits. The appropriateness and capability of the new function for cylindrical structures is exemplified using the example of a wormlike micellar system.
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