Anisotropic magnetic properties of dysprosium iron garnet (DyIG)

被引:16
|
作者
Lahoubi, M. [1 ]
Younsi, W. [1 ]
Soltani, M. -L. [1 ]
Ouladdiaf, B.
机构
[1] Badji Mokhtar Univ, Dept Phys, Annaba 23000, Algeria
关键词
D O I
10.1088/1742-6596/200/8/082018
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The magnetic properties of dysprosium iron garnet (DyIG) have been studied by performing high resolution powder neutron diffraction experiments and high dc fields magnetizations on single crystals. Among all the reflections (hkl) indexed in the nuclear cubic space group (CSG) Ia (3) over bar d with h+k+l=2n and k=[000], the superstructure lines (hkl)* forbidden by the symmetry (222)* and (622)* are not observed in the patterns at all temperatures. The pattern at 130 K is well interpreted within the magnetic modes F belonging to the irreducible representation (IR) T-1g of the CSG and identified to the room temperature ferrimagnetic Neel model. The high magnetic field behavior of the spontaneous collinear magnetic structure (MS) along the easy axis (EA) < 111 > is isotropic. Below 130 K, the patterns exhibit additional magnetic superstructure lines. They are associated to the appearance of the spontaneous non collinear MS which is described in the subgroup of the CSG, R (3) over bar c within the IR A(2g). A strong magnetization anisotropy (MA) is observed at 1.5 K in the low symmetry phases < uuw > were the spin reorientation transition (SR) occur at T-RS=14.5 K. The onset of MA is detected below two characteristic temperatures, Ta-1=125 K and Ta-2=75 K respectively to the hard axis (HA) < 100 > and < 110 >. Symmetry arguments are used in the framework of the theory of representation analysis (RA) applied to the subgroup of R (3) over bar c, C2/c within the IR A(g). It seems that this MA results essentially from the difference between the spontaneous non collinear MS and the field induced (FI) configurations. All results are discussed with previous neutrons studies.
引用
收藏
页数:4
相关论文
共 50 条
  • [31] ANISOTROPIC INTERACTION BETWEEN MAGNETIC IONS IN DYSPROSIUM
    NICKLOW, RM
    KOEHLER, WC
    NIELSEN, M
    BULLETIN OF THE AMERICAN PHYSICAL SOCIETY, 1974, 19 (03): : 206 - 207
  • [32] Magnetic and magnetocaloric properties of iron substituted holmium chromite and dysprosium chromite
    Yin, Shiqi
    Sharma, Vinit
    McDannald, Austin
    Reboredo, Fernando A.
    Jain, Menka
    RSC ADVANCES, 2016, 6 (12) : 9475 - 9483
  • [33] MAGNETIC AND THERMAL PROPERTIES OF DYSPROSIUM ALUMINUM GARNET .2. CHARACTERISTIC PARAMETERS OF AN ISING ANTIFERROMAGNET
    WOLF, WP
    SCHNEIDER, B
    LANDAU, DP
    KEEN, BE
    PHYSICAL REVIEW B-SOLID STATE, 1972, 5 (11): : 4472 - +
  • [34] The Structural and the Magnetic Properties of Aluminum Substituted Yttrium Iron Garnet
    Mohaidat, Qassem I.
    Lataifeh, Mahdi
    Hamasha, Khozima
    Mahmood, Sami H.
    Bsoul, Ibrahim
    Awawdeh, Mufeed
    MATERIALS RESEARCH-IBERO-AMERICAN JOURNAL OF MATERIALS, 2018, 21 (03):
  • [35] Magnetic properties of praseodymium-substituted iron garnet films
    1600, American Inst of Physics, Woodbury, NY, USA (74):
  • [36] Effect of reversible adsorption on the magnetic properties of iron garnet films
    V. E. Zubov
    A. D. Kudakov
    N. L. Levshin
    M. A. Vlasov
    Journal of Experimental and Theoretical Physics, 2013, 116 : 766 - 774
  • [37] MAGNETIC PROPERTIES OF DYSPROSIUM ALUMINUM GARNET .2. EXPERIMENTAL RESULTS AT VERY LOW TEMPERATURE
    BIDAUX, R
    CARRARA, P
    VIVET, B
    JOURNAL DE PHYSIQUE, 1968, 29 (04): : 357 - &
  • [38] MAGNETIC PROPERTIES OF SINGLE CRYSTAL ERBIUM IRON GARNET.
    Guillot, M.
    Marchand, A.
    Feldmann, P.
    Le Gall, H.
    Desvignes, J.M.
    Journal of Applied Physics, 1979, 50 (B3): : 2112 - 2114
  • [39] Magnetic and thermal properties of ferromagnetic insulator: Yttrium Iron Garnet
    Mohmed, Fida
    Dar, Farooq Ahmad
    Rubab, Seemin
    Hussain, Majid
    Hua, Lin-Yuan
    CERAMICS INTERNATIONAL, 2019, 45 (02) : 2418 - 2424
  • [40] Effect of reversible adsorption on the magnetic properties of iron garnet films
    Zubov, V. E.
    Kudakov, A. D.
    Levshin, N. L.
    Vlasov, M. A.
    JOURNAL OF EXPERIMENTAL AND THEORETICAL PHYSICS, 2013, 116 (05) : 766 - 774