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Featured researches published by F.U. Ahmed.


Materials Letters | 2003

Preparation of Zn substituted Ni-Fe-Cr ferrites and study of the crystal structure by neutron diffraction

A.K.M. Zakaria; M.A. Asgar; S.-G. Eriksson; F.U. Ahmed; S.M. Yunus; A.K. Azad; Håkan Rundlöf

The spinel type solid solutions of ZnxNi1−xFeCrO4 (x=0.2, 0.4, 0.6 and 0.8) were obtained by solid state sintering technique in air at 1523 K. X-ray and neutron powder diffraction experiments have been carried out on the samples at 295 K in order to characterize the materials. Rietveld refinement of the neutron diffraction data reveals that all the samples of the series possess cubic symmetry corresponding to the space group Fd3m. The distribution of Zn ions on the A and B sites as affected by the variation of x and also the distribution of Cr ions on the A and B sites have been determined. The Fe ions are distributed over both the A and B sites for the whole compositional range investigated. Only a small portion of the Ni ions are found to occupy the A site for x=0.2, while all the Ni ions enter the B site for x≥0.4. The fractional coordinates of oxygen u, and the lattice parameter a, increase with increasing Zn content. The moment distributions in the two sublattices for different composition have been determined.


Journal of Magnetism and Magnetic Materials | 2002

Investigation of the magnetic structure of the spinel compound ZnxCu1−xFeCrO4 by neutron diffraction

S.M. Yunus; H.-S. Shim; C.-H. Lee; M.A. Asgar; F.U. Ahmed; A.K.M. Zakaria

Abstract Temperature-dependent neutron diffraction measurements have been performed on the spinel system Zn x Cu 1− x FeCrO 4 prepared by the ceramic sintering method. The system shows significant deviations from the usual ferrimagnetic behavior. The ferrimagnetic order is perturbed due to the presence of non-collinear spins mainly at the B site. For compositions with larger x values, an unstable ferromagnetic transition takes place before reaching the paramagnetic state. The system may be said to be in a perturbed ferrimagnetic state at x ⩽0.4, where ferrimagnetic ordering is perturbed by the presence of locally canted spin components. The presence of small fluctuating magnetic clusters superimposed on the ferrimagnetic long range order has been revealed by the features shown by neutron data from the compositions with x ⩾0.6. For x =0.6, the lowest-Q Bragg reflection is significantly broadened by the diffuse scattering from these clusters. A semi-spin glass state is proposed for the composition with x =0.6, while a drastic reduction of the sublattice magnetization and a decrease of the diffuse signal is in favor of a cluster spin glass-like phase for the specimen with x =0.8.


Journal of Magnetism and Magnetic Materials | 2003

The study of magnetic ordering in the spinel system ZnxNi1−xFeCrO4 by neutron diffraction

A.K.M. Zakaria; M.A. Asgar; S.-G. Eriksson; F.U. Ahmed; S.M. Yunus; Håkan Rundlöf

Abstract Neutron diffraction measurements have been performed in the temperature range 600 K⩾ T ⩾10 K on the spinel system ZnxNi1−xFeCrO4 (x=0.2, 0.4, 0.6 and 0.8) synthesized in the ceramic sintering method. The moment distributions in the two sublattices and their ordering as affected by compositional change and temperature variation have been determined. Ferrimagnetic transition temperatures and spin compensation temperatures for all the specimens have been determined. The system shows significant deviations from the usual ferrimagnetic behavior, which increases with the increase of diamagnetic substitutions, being more prominent in the B sublattice. The ferrimagnetic ordering is perturbed due to the presence of non-collinear spins mainly in the B site. Presence of small fluctuating magnetic clusters for x⩾0.6 is evident from the diffuse nature of the scattered intensity. A qualitative explanation of the observed features is put forward in the light of competing inter and intra sublattice exchange interactions. A randomly canted ferrimagnetic ordering is suggestive for the system at x⩽0.4, while a semi-spin glass like transition is favorable for x⩾0.6 due to large reduction in moment and evolution of diffuse signal from short-range clusters at low temperatures.


MAGNETIC MATERIALS: International Conference on Magnetic Materials#N#(ICMM‐2007) | 2008

Cation Distribution And Crystallographic Properties Of The Quaternary Spinel Compound Zn0.4Cu0.6AlxFe2−xO4 (0.0⩽x⩽1.0)

A.K.M. Zakaria; Ma Asgar; Sten G. Eriksson; F.U. Ahmed; S.M. Yunus; Ma Hakim

The spinel system Zn(0.4)Cu(0.6)Al(x)Fe(2-x)O4 with x = 0.0, 0.25, 0.50, 0.75 & 1.0 were obtained by solid state reactions in air at 1373 K. X-ray and neutron powder diffraction measurements were performed at room temperature (RT) to characterize the materials. Rietveld refinement of neutron diffraction data showed cubic symmetry corresponding to the space group Fd3m. The distribution of cations over the two sublattices and other crystallographic parameters were determined precisely. The cell parameter decreases and oxygen parameter increases with increasing Al. Sublattices and net magnetic moments at RT were also deduced from the analysis of neutron data. The magnetic structure at RT was found to be ferrimagnetic for x <= 0.75.


Journal of Magnetism and Magnetic Materials | 2001

NEUTRON DIFFRACTION STUDIES OF THE DILUTED SPINEL FERRITE ZNXMG0.75?XCU0.25FE2O4

S.M. Yunus; H.-S. Shim; C.-H. Lee; M.A. Asgar; F.U. Ahmed; A.K.M. Zakaria


Physica B-condensed Matter | 1999

Neutron diffraction studies of the magnetic disorder in ZnxMg0.8−xNi0.2Fe2O4 ferrite with x=0.0, 0.2, 0.4 and 0.6

S.M. Yunus; Jaime A. Fernandez-Baca; M.A. Asgar; F.U. Ahmed; M.A Hakim


Physica B-condensed Matter | 2006

Synthesis, cation distribution and crystal structure of the spinel oxides MnGaxFe1−xCrO4 by neutron diffraction

A.K.M. Zakaria; M.A. Asgar; S.-G. Eriksson; F.U. Ahmed; S.M. Yunus; A.K. Azad


Journal of Magnetism and Magnetic Materials | 2000

Room temperature, low temperature and polarized neutron studies of YSr2Fe3O8

A.K Azad; A.K.M. Zakaria; F.U. Ahmed; S.K. Paranjpe; A. Das


Journal of Magnetism and Magnetic Materials | 2004

Neutron diffraction study of magnetic structure in the diluted spinel ferrite Zn0.4Co0.6AlxFe2−xO4 (0.0⩽x⩽1.0)

A.K.M. Zakaria; M.A. Asgar; S.-G. Eriksson; F.U. Ahmed; S.M. Yunus; R.G. Delaplane


Journal of Magnetism and Magnetic Materials | 2007

Study of the magnetic structure in the spinel oxides MnGaxFe1−xCrO4 by neutron diffraction

A.K.M. Zakaria; M.A. Asgar; Sten G. Eriksson; F.U. Ahmed; S.M. Yunus

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S.M. Yunus

Bangladesh Atomic Energy Commission

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A.K.M. Zakaria

Bangladesh Atomic Energy Commission

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M.A. Asgar

Bangladesh University of Engineering and Technology

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Sten G. Eriksson

Chalmers University of Technology

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A.K Azad

Bangladesh Atomic Energy Commission

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I Kamal

Bangladesh Atomic Energy Commission

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