Quantum Model of Hysteresis in a Single-Domain Magnetically Soft Ferromagnet

被引:0
|
作者
Ignatiev, V. K. [1 ]
Lebedev, N. G. [1 ]
Orlov, A. A. [1 ]
机构
[1] Volgograd State Univ, Pr Univ Skii 100, Volgograd 400062, Russia
来源
PHYSICS OF METALS AND METALLOGRAPHY | 2018年 / 119卷 / 05期
关键词
model Hamiltonian; spin-orbital interaction; Zeeman energy; crystal field; magnetic anisotropy; method of equivalent operators;
D O I
10.1134/S0031918X18020059
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
A quantum model of a magnetically soft ferromagnet constructed based on a single domain of an alpha-Fe crystal magnetized to saturation and placed in an alternating magnetic field is suggested. Based on the method of an effective Hamiltonian, the model takes into account the Zeeman energy, the spin-orbital interaction, and the interaction with the crystal field. In order to take into account the magnetic anisotropy, an expansion of a trial single-electron wave function into a series in terms of a small parameter of the spin-orbital interaction is suggested. The nonlinear equations of motion for the magnetization and orbital moment of the domain have been determined within the Heisenberg representation. The parameters of the nonlinear equations have been determined by comparing with the experimental data on the magnetic anisotropy of iron. The equations were solved numerically using the Runge-Kutta method with taking into account the magnetic friction introduced phenomenologically. The dependence of the magnetization of a single domain on the strength of the applied magnetic field has been characterized by hysteresis. The main parameters of the hysteresis loop are in quantitative agreement with the experimentally measured magnetic properties of nanoparticles of iron and iron oxide. A method of simulating the magnetization dynamics of a multidomain ferromagnet in the approximation of a strong crystal field has been suggested.
引用
下载
收藏
页码:452 / 461
页数:10
相关论文
共 50 条
  • [1] Quantum Model of Hysteresis in a Single-Domain Magnetically Soft Ferromagnet
    V. K. Ignatiev
    N. G. Lebedev
    A. A. Orlov
    Physics of Metals and Metallography, 2018, 119 : 452 - 461
  • [2] Quantum model of a hysteresis in a single-domain magnetically soft ferromagnetic
    Ignatiev, Vyacheslav Konstantinovich
    Lebedev, N. G.
    Orlov, A. A.
    JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2018, 446 : 135 - 142
  • [3] Quantum model for studying magneto-mechanical properties of a magnetically soft ferromagnet
    Ignatiev, V. K.
    Lebedev, N. G.
    Orlov, A. A.
    Perchenko, S. V.
    JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2020, 494 (494)
  • [4] Longitudinal dynamic hysteresis in single-domain particles
    Landi, G. T.
    Santos, A. D.
    JOURNAL OF APPLIED PHYSICS, 2012, 111 (07)
  • [5] FERROMAGNETIC RESONANCE IN UNIAXIAL SINGLE-DOMAIN PARTICLE OF A FERROMAGNET
    MIKHAYLOVSKIY, LK
    POLLAK, BP
    SOKOLOV, OA
    PHYSICS OF METALS AND METALLOGRAPHY, 1966, 21 (04): : 40 - +
  • [6] ISOLATED VOID AND BRITTLE CLEAVAGE IN SINGLE-DOMAIN FERROMAGNET
    KORNYUSHIN, YV
    FIZIKA METALLOV I METALLOVEDENIE, 1978, 45 (01): : 192 - 195
  • [7] Group of Quantum Bits Acting as a Bit Using a Single-Domain Ferromagnet of Uniaxial Magnetic Ions
    Gordon, Elijah E.
    Koo, Hyun-Joo
    Deng, Shuiquan
    Koehler, Juergen
    Whangbo, Myung-Hwan
    CHEMPHYSCHEM, 2017, 18 (16) : 2147 - 2150
  • [8] ASYMMETRY OF MINOR HYSTERESIS LOOPS IN SINGLE-DOMAIN MATERIALS
    MARTEMYANOV, AN
    SHTOLZ, YV
    KAUNOV, NG
    PANKIN, VB
    FIZIKA METALLOV I METALLOVEDENIE, 1978, 45 (06): : 1319 - 1322
  • [9] Hysteresis in a Microactuator With Single-Domain Magnetic Thin Films
    Wei, Zung-Hang
    Lo, Chi-Kuen
    Liu, Da-Ren
    Hsieh, Yi-Ping
    Lee, Yun-Ruei
    Shiao, Hong-Ren
    Chiu, Yi-Hsun
    Lee, Chiun-Peng
    Liao, Chun-Neng
    Chen, Ying-Jiun
    Hsu, Chia-Jung
    Lai, Mei-Feng
    IEEE TRANSACTIONS ON MAGNETICS, 2010, 46 (02) : 630 - 633
  • [10] Dynamic magnetic hysteresis in single-domain particles with uniaxial anisotropy
    Poperechny, I. S.
    Raikher, Yu. L.
    Stepanov, V. I.
    PHYSICAL REVIEW B, 2010, 82 (17):