Magnetic particles confined in a modulated channel: Structural transitions tunable by tilting a magnetic field

J. E. Galván-Moya, D. Lucena, W. P. Ferreira, and F. M. Peeters
Phys. Rev. E 89, 032309 – Published 31 March 2014

Abstract

The ground state of colloidal magnetic particles in a modulated channel are investigated as a function of the tilt angle of an applied magnetic field. The particles are confined by a parabolic potential in the transversal direction while in the axial direction a periodic substrate potential is present. By using Monte Carlo simulations, we construct a phase diagram for the different crystal structures as a function of the magnetic field orientation, strength of the modulated potential, and the commensurability factor of the system. Interestingly, we found first- and second-order phase transitions between different crystal structures, which can be manipulated by the orientation of the external magnetic field. A reentrant behavior is found between two- and four-chain configurations, with continuous second-order transitions. Novel configurations are found consisting of frozen solitons of defects. By changing the orientation and/or strength of the magnetic field and/or the strength and periodicity of the substrate potential, the system transits through different phases.

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  • Received 20 December 2013

DOI:https://doi.org/10.1103/PhysRevE.89.032309

©2014 American Physical Society

Authors & Affiliations

J. E. Galván-Moya1,*, D. Lucena1,2, W. P. Ferreira2, and F. M. Peeters1,2,†

  • 1Department of Physics, University of Antwerp, Groenenborgerlaan 171, B-2020, Antwerp, Belgium
  • 2Departamento de Física, Universidade Federal do Ceará, Caixa Postal 6030, Campus do Pici, 60455-760 Fortaleza, Ceará, Brazil

  • *jesuseduardo.galvanmoya@uantwerpen.be
  • francois.peeters@uantwerpen.be

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Vol. 89, Iss. 3 — March 2014

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