Journal ArticleDOI
Magnetic ordering in the garner NaCa2Mn2V3O12
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TLDR
The magnetic structure of the garnet NaCa 2 Mn 2 V 3 O 12 with Mn 2+ ions at 16 a positions has been determined by neutron diffraction as discussed by the authors, and measurements of Young's modulus and the inverse susceptibility have been made.About:
This article is published in Solid State Communications.The article was published on 1974-02-15. It has received 6 citations till now. The article focuses on the topics: Magnetic structure & Neutron diffraction.read more
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Photomagnetic effects and disaccommodation in Co-doped YIG
TL;DR: In this paper, the authors investigated the properties of Y3Fe5O12 (YIG) doped with ≦ 0.01 Co per molecule in combination with small dopes of V or (and) Mn.
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Antiferromagnetic phase transition in garnet-type AgCa2Co2V3O12 and AgCa2Ni2V3O12
TL;DR: In this article, the authors investigated the magnetic susceptibility of vanadium garnets and found that the heat capacity exhibits sharp peak due to the antiferromagnetic order with the Neel temperature T N =6.39 K for AgCa 2 Co 2 V 3 O 12 and 7.21 K for Ni 2+ ion.
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Spin wave spectrum and exchange interactions in the antiferromagnetic garnet Ca3Cr2Ge3O12 by inelastic neutron scattering
TL;DR: In this paper, the authors measured the spin wave spectrum for the garnet Ca3Cr2Ge3O12 by means of inelastic neutron scattering and calculated the integrated intensities in order to check the eigenvectors directly.
Journal ArticleDOI
Magnetic ordering and bond geometry in garnets with Fe3+ ions in the tetrahedral sublattice
V. P. Plakhtii,I. V. Golosovskii,M. N. Bedrisova,O. P. Smirnov,V. I. Sokolov,B. V. Mill,N. N. Parfenova +6 more
TL;DR: In this article, different triangle spin configurations are found in all studied garnets, except in the last one, where no long-range order was found, and the form factor of Fe3+ exhibits the forward peak associated with covalent spin density.
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Magnetic susceptibility of vanadium garnets NaPb2Co2V3O12 and NaPb2Ni2V3O12
TL;DR: In this article, the X-ray diffraction experiments indicate that these compounds have the garnet structure of cubic symmetry of space group I a 3 ¯ d ( O h 10 ) with the lattice constant of 12.742 A (NaPb2Co2V3O12) and 12.666 A (Nb2Ni2V 3O12), respectively.
References
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On the high temperature staggered susceptibility of Heisenberg model antiferromagnetics
G.S. Rushbrooke,P.J. Wood +1 more
TL;DR: The critical ordering temperature for the antiferromagnetic Heisenberg model was investigated in this article on the basis of the high temperature expansion for the staggered susceptibility, where q is the lattice coordination number, S the spin value and T c the corre-sponding ferromagnetic Curie point.
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Importance of intrasublattice magnetic interactions and of substitutional ion type in the behavior of substituted yttrium iron garnets
TL;DR: The results of measurements at moderate to high magnetic fields on a large number of nonmagnetic ion substituted yttrium iron garnets suggest that intrasublattice interactions play an important role in determining their spontaneous magnetizations and Curie temperatures as mentioned in this paper.
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Magnetic structure and space group of the garnet Ca3Cr2(GeO4)3
TL;DR: In this paper, from powder neutron diffraction data a pair of collinear, enantiomorphic magnetic structures is derived, the magnetic space group of which is Ip41 22 or Ip 41 ‘22, respectively.