3D Monte Carlo simulations of a magnetic disk-like particle dispersion

被引:6
|
作者
Satoh, Akira [1 ]
Aoshima, Masayuki [1 ]
机构
[1] Akita Prefectural Univ, Fac Syst Sci & Technol, Tsuchiya Aza, Yuri Honjo 0150055, Japan
关键词
Disk-like particle; Aggregation phenomena; Magnetic colloidal dispersion; Monte Carlo simulations; Radial distribution function; Orientational pair correlation function; ORIENTATIONAL DISTRIBUTIONS; RHEOLOGICAL PROPERTIES; PHOTONIC CRYSTALS; LIQUID-CRYSTALS; FIELD; MICROSTRUCTURE; SPHEROCYLINDERS; NANOPLATELETS; AXIS;
D O I
10.1007/s00396-010-2320-9
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
We have investigated the aggregate structures of a colloidal dispersion composed of ferromagnetic disk-like particles with a magnetic moment normal to the particle axis at the particle center, by means of 3D Monte Carlo simulations. Such disk-like particles have been modeled as a circular disk-like particle with the side section shape of spherocylinder. We have attempted to clarify the influences of the magnetic field strength, magnetic interactions between particles and volumetric fraction of particles. In order to discuss quantitatively the aggregate structures of clusters, we have focused on the radial distribution and orientational pair correlation functions, etc. For no applied magnetic field cases, long column-like clusters come to be formed with increasing magnetic particle-particle interactions. The internal structures of these clusters clearly show that the particles incline in a certain direction and their magnetic moments alternate in direction between the neighboring particles in the clusters. For applied magnetic field cases, the magnetic moment of each particle inclines in the magnetic field direction and therefore the column-like clusters are not formed straightforwardly. If the magnetic field is much stronger than magnetic particle-particle interactions, the particles do not have a tendency to form the clusters. As the influence of magnetic particle-particle interactions is significantly strong, thick chain-like clusters or column-like clusters or brick-wall-like clusters come to be formed along the magnetic field direction.
引用
收藏
页码:53 / 62
页数:10
相关论文
共 50 条
  • [41] Convergence Properties of Density Gradient Quantum Corrections in 3D Ensemble Monte Carlo Simulations
    Riddet, Craig
    Asenov, Asen
    SISPAD: 2008 INTERNATIONAL CONFERENCE ON SIMULATION OF SEMICONDUCTOR PROCESSES AND DEVICES, 2008, : 261 - 264
  • [42] 3D Monte-Carlo Simulations of Multipactor in Dielectric-Loaded Accelerating Structures
    Sinitsyn, Oleksandr
    Nusinovich, Gregory
    Antonsen, Thomas, Jr.
    ADVANCED ACCELERATOR CONCEPTS, 2012, 1507 : 505 - 510
  • [43] 3D Monte Carlo Simulations of Pixelated CdZnTe Detectors under High Photon Fluxes
    Rodrigues, Miesher L.
    He, Zhong
    2010 IEEE NUCLEAR SCIENCE SYMPOSIUM CONFERENCE RECORD (NSS/MIC), 2010, : 3836 - 3838
  • [44] A graphical user interface for calculation of 3D dose distribution using Monte Carlo simulations
    Chow, James C. L.
    Leung, Michael K. K.
    INTERNATIONAL WORKSHOP ON MONTE CARLO TECHNIQUES IN RADIOTHERAPY DELIVERY AND VERIFICATION - THIRD MCGILL INTERNATIONAL WORKSHOP, 2008, 102
  • [45] Interplay of master regulatory proteins and mRNA in gene expression: 3D Monte Carlo simulations
    Zhdanov, Vladimir P.
    CHEMICAL PHYSICS LETTERS, 2008, 456 (4-6) : 247 - 252
  • [46] Deriving attenuation coefficients from 3D CT data for SPECT Monte Carlo simulations
    Baccarne, V
    Turzo, A
    Bizais, Y
    Farine, M
    PHYSICS OF MEDICAL IMAGING - MEDICAL IMAGING 1997, 1997, 3032 : 171 - 181
  • [47] Tetrahedral elements in self-consistent parallel 3D Monte Carlo simulations of MOSFETs
    Aldegunde, M.
    Garcia-Loureiro, A. J.
    Martinez, A.
    Kalna, K.
    JOURNAL OF COMPUTATIONAL ELECTRONICS, 2008, 7 (03) : 201 - 204
  • [48] Development and Monte Carlo simulations of a novel 3D range-modulator for proton therapy
    Simeonov, Y.
    Weber, U.
    Penchev, P.
    Ringbaek, T. Printz
    Zink, K.
    RADIOTHERAPY AND ONCOLOGY, 2018, 127 : S315 - S316
  • [49] Tetrahedral elements in self-consistent parallel 3D Monte Carlo simulations of MOSFETs
    M. Aldegunde
    A. J. García-Loureiro
    A. Martinez
    K. Kalna
    Journal of Computational Electronics, 2008, 7 : 201 - 204
  • [50] 3D Finite Element Schrodinger Equation Corrected Monte Carlo Simulations of Nanoscale FinFETs
    Nagy, D.
    Elmessary, M. A.
    Aldegunde, M.
    Lindberg, J.
    Dettmer, W.
    Peric, D.
    Loureiro, A.
    Kalna, K.
    2014 INTERNATIONAL WORKSHOP ON COMPUTATIONAL ELECTRONICS (IWCE), 2014,