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Ordering and phase transitions of charged particles in a classical finite two-dimensional system
514
Citations
14
References
1994
Year
Phase TransitionsQuantum Lattice SystemEngineeringComputational ChemistryStatistical Field TheoryBiophysicsPhysicsQuantum Field TheoryAtomic PhysicsWigner CrystallizationQuantum ChemistryTopological PhaseCharged ParticlesCharged Classical ParticlesNatural SciencesCondensed Matter PhysicsApplied PhysicsInteracting Particle SystemDisordered Quantum SystemCritical PhenomenonCircular ParabolicMany-body Problem
We report a Monte Carlo study of phase transitions in a finite two-dimensional (2D) system of charged classical particles which are confined by a circular parabolic or hard-wall well. The ground-state configurations are found by static energy calculations and their structures are analyzed using the Voronoi constructions. A Mendeleev table for these classical 2D-like atoms is obtained. We calculate the radial and angular components of the displacements of the particles as functions of temperature and determine the critical temperatures for the order-disorder phase transitions. The intershell rotation and intershell diffusion transitions are investigated. The results are compared with Wigner crystallization in the infinite 2D system.
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