Three-Dimensional Aggregation Dynamics of Magnetic Janus Colloids with Radially Shifted Dipoles
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This dataset contains post-processed output files derived from particle-based Brownian dynamics simulations designed to analyze the structural and orientational behavior of particles under different interaction conditions, including variations in dipolar coupling strength and dipole displacement. The data are organized into folders, and each folder name encodes the simulation parameters used. The parameter s denotes the dipolar shift, which defines the relative position of the magnetic dipole within each particle. For example, s = 0.0 indicates that the dipole is located at the particle center of mass, whereas s = 1.0 indicates that the dipole is located at the particle surface. The dipolar coupling constant (\Lambda) quantifies the relative importance of dipolar interactions compared with thermal energy. Each simulation folder contains two plain-text output files: Average_ninj.out: Contains information on the relative orientations of neighboring particles, including the cosine of the angle between their orientation vectors, the frequency of occurrence, and the associated standard deviation. Average_Repetition.out: Contains a time-resolved summary of clustering metrics, including the number of clusters, average cluster size, radius of gyration, effective radius, and related statistical measures. Each quantity is reported together with its mean and standard deviation. These data are intended to support the quantitative analysis of structure formation and aggregation dynamics in soft matter systems, magnetic colloids, and related particle-based models. A detailed description of all variables, file formats, and calculations is provided in the accompanying README file.



