Magnetic dynamics of weakly and strongly interacting hematite nanoparticles

被引:200
|
作者
Hansen, MF
Koch, CB
Morup, S
机构
[1] Tech Univ Denmark, Dept Phys, DK-2800 Lyngby, Denmark
[2] Royal Vet & Agr Univ, Dept Chem, DK-1871 Frederiksberg C, Denmark
[3] Tech Univ Denmark, Dept Phys, DK-2800 Lyngby, Denmark
来源
PHYSICAL REVIEW B | 2000年 / 62卷 / 02期
关键词
D O I
10.1103/PhysRevB.62.1124
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The magnetic dynamics of two differently treated samples of hematite nanoparticles from the same batch with a particle size of about 20 nm have been studied by Mossbauer spectroscopy. The dynamics of the first sample, in which the particles are coated and dispersed in water, is in accordance with the Neel expression for the superparamagnetic relaxation time of noninteracting particles. From a simultaneous analysis of a series of Mossbauer spectra, measured as a function of temperature, we obtain the median energy barrier KBuVm/k = 570 +/- 100 K and the preexponential factor tau(0) = 1.3(-0.8)(+1.0) x 10(-10) s for a rotation of the sublattice magnetization directions in the rhombohedral (111) plane. The corresponding median superparamagnetic blocking temperature is about 150 K. The dynamics of the second, dry sample, in which the particles are uncoated and thus allowed to aggregate, is slowed down by interparticle interactions and a magnetically split spectrum is retained at room temperature. The temperature variation or the magnetic hyperfine field, corresponding to different quantiles in the hyperfine field distribution, can be consistently described by a mean field model for "superferromagnetism" in which the magnetic anisotropy is included. The coupling between the particles is due to exchange interactions and the interaction strength can be accounted for by just a few exchange bridges between surface atoms in neighboring crystallites.
引用
收藏
页码:1124 / 1135
页数:12
相关论文
共 50 条
  • [31] Topology, Magnetic Field, and Strongly Interacting Matter
    Kharzeev, Dmitri E.
    ANNUAL REVIEW OF NUCLEAR AND PARTICLE SCIENCE, VOL 65, 2015, 65 : 193 - 214
  • [32] Static magnetization of immobilized, weakly interacting, superparamagnetic nanoparticles
    Elfimova, Ekaterina A.
    Ivanov, Alexey O.
    Camp, Philip J.
    NANOSCALE, 2019, 11 (45) : 21834 - 21846
  • [33] Thermodynamics of interacting magnetic nanoparticles
    Torche, P.
    Munoz-Menendez, C.
    Serantes, D.
    Baldomir, D.
    Livesey, K. L.
    Chubykalo-Fesenko, O.
    Ruta, S.
    Chantrell, R.
    Hovorka, O.
    PHYSICAL REVIEW B, 2020, 101 (22)
  • [34] Out-of-equilibrium dynamics in superspin glass state of strongly interacting magnetic nanoparticle assemblies
    Nakamae, Sawako
    JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2014, 355 : 225 - 229
  • [35] Biosynthesis, Magnetic and Cytotoxic Studies of Hematite Nanoparticles
    Abdolhossein Miri
    Mehrdad Khatami
    Mina Sarani
    Journal of Inorganic and Organometallic Polymers and Materials, 2020, 30 : 767 - 774
  • [36] Weakly or Strongly Nonlinear Mesoscale Dynamics Close to the Tropopause?
    Li, Qiang
    Lindborg, Erik
    JOURNAL OF THE ATMOSPHERIC SCIENCES, 2018, 75 (04) : 1215 - 1229
  • [37] Biosynthesis, Magnetic and Cytotoxic Studies of Hematite Nanoparticles
    Miri, Abdolhossein
    Khatami, Mehrdad
    Sarani, Mina
    JOURNAL OF INORGANIC AND ORGANOMETALLIC POLYMERS AND MATERIALS, 2020, 30 (03) : 767 - 774
  • [38] SELF-DIFFUSION IN POTENTIALS OF MEAN FORCE IN WEAKLY-INTERACTING AND STRONGLY-INTERACTING DISPERSIONS
    HIRTZEL, CS
    RAJAGOPALAN, R
    CHEMICAL ENGINEERING COMMUNICATIONS, 1987, 55 (1-6) : 275 - 293
  • [39] Dynamics of weakly interacting bosons in optical lattices with flux
    Hudomal, Ana
    Vasic, Ivana
    Buljan, Hrvoje
    Hofstetter, Walter
    Balaz, Antun
    PHYSICAL REVIEW A, 2018, 98 (05)
  • [40] DYNAMICS OF PHASE TRANSITION IN WEAKLY INTERACTING BOSE GAS
    KONDOR, I
    SZEPFALUSY, P
    PHYSICS LETTERS A, 1970, A 33 (05) : 311 - +