Magnetic phase diagram of spinel spin-glasses

[1]  S. Oseroff Magnetic susceptibility and EPR measurements in concentrated spin-glasses: Cd 1 − x Mn x Te and Cd 1 − x Mn x Se , 1982 .

[2]  D. Fiorani,et al.  EPR powder spectra of Co(II) in ZnRh2O4 spinel matrix , 1980 .

[3]  R. Plumier,et al.  High magnetic field study of sulphur spinel Cu1/2In1/2Cr2S4 , 1980 .

[4]  Asai Kichizo,et al.  Magnetization Measurements and 57Fe Mössbauer Studies of LaNi1-xFexO3 (0.0≤x≤0.2) , 1980 .

[5]  M. Pękała,et al.  The cluster blocking distribution function in the spin glass transition range of FexV2O5 , 1980 .

[6]  M. Pękała,et al.  The semiconducting spin glasses θ‐FexV2O5 , 1980 .

[7]  R. Hornreich,et al.  Is Fe2TiO5 an anisotropic spin glass , 1980 .

[8]  D. Fiorani,et al.  Investigation on magnetically-diluted spinels , 1980 .

[9]  D. Fiorani,et al.  Epr study of CoxZn1−xRh2O4 spinel solid solution , 1980 .

[10]  D. Fiorani,et al.  Monte carlo simulation of percolative phenomena in the cationic b-sublattice of spinels , 1979 .

[11]  M. Pękała,et al.  Spin glass phase in the iron vanadium oxide bronze θ − Fe0.35V2O5 , 1979 .

[12]  R. Tournier,et al.  Spin-glass properties of a crystalline transition-metal oxide: (Ti/sub 1-x/V/sub x/)/sub 2/O/sub 3/ , 1979 .

[13]  G. Grest,et al.  Monte Carlo Study of Spin-Glass Ordering on Dilute Frustrated Lattices , 1979 .

[14]  Y. Srivastava,et al.  Energy-Momentum Distribution ine+e−Annihilation , 1979 .

[15]  Y. Srivastava,et al.  ENERGY -MOMENTUM DISTRIBUTION IN e+e- ANNIHILATION , 1979 .

[16]  D. Fiorani,et al.  Experimental evidence of a critical concentration for the long-range magnetic order in the A-sublattice of spinels , 1979 .

[17]  A. Aharony Low-temperature phase diagram and critical properties of a dilute spin glass , 1978 .

[18]  J. Hubsch,et al.  Percolation and magnetic order in diluted spinels , 1978 .

[19]  A. Morrish,et al.  Magnetic tetrahedral intrasublattice interactions in the spinel family Fe x Cu 1-x Rh 2 S 4 , 1978 .

[20]  M. Perrin,et al.  Three‐Sublattice Ferrimagnetic Structure , 1967 .

[21]  N. Menyuk,et al.  Reduced Manganese Moment in Manganese Chromite , 1966 .

[22]  N. Menyuk,et al.  Ferromagnetism in CdCr2Se4 and CdCr2S4 , 1966 .

[23]  R. Plumier Étude par diffraction de neutrons de l'antiferromagnétisme hélicoïdal du spinelle ZnCr2Se4 en présence d'un champ magnétique , 1966 .

[24]  B. Boucher,et al.  Étude par mesures neutrocristallographiques et magnétiques du spinelle normal antiferromagnétique MnGa2O4 , 1966 .

[25]  F. Lotgering On the antiferromagnetism of ZnCr2Se4 , 1965 .

[26]  H. Lehmann,et al.  Insulating Ferromagnetic Spinels , 1965 .

[27]  G. Bacchella,et al.  Étude sur la structure magnétique de FeCr2O4 , 1964 .

[28]  E. F. Bertaut,et al.  Structure magnétique et propriétés magnétiques de GeNi2O 4 , 1964 .

[29]  W. Roth Magnetic properties of normal spinels with only a-a interactions , 1964 .

[30]  N. Menyuk,et al.  Ferrimagnetic spiral configurations in cobalt chromite , 1964 .

[31]  G. Shirane,et al.  Magnetic Structures in FeCr2S4 and FeCr2O4 , 1964 .

[32]  W. Roth The magnetic structure of Co3O4 , 1964 .

[33]  N. Menyuk,et al.  Classical Theory of the Ground Spin-State in Cubic Spinels , 1962 .

[34]  J. M. Hastings,et al.  Magnetic Structure of Manganese Chromite , 1962 .

[35]  J. I. Kaplan Nonlinear Effects of Z‐Directed Spin Waves in Thin Films , 1961 .

[36]  E. Hornbogen Clustering in an Alpha Iron‐Molybdenum Solid Solution , 1961 .

[37]  T. Kaplan,et al.  Method for Determining Ground-State Spin Configurations , 1960 .

[38]  J. Goodenough,et al.  Suggestion concerning magnetic interactions in spinels , 1959 .

[39]  J. M. Hastings,et al.  An Antiferromagnetic Transition in Zinc Ferrite , 1956 .

[40]  C. Kittel,et al.  Antiferromagnetic Arrangements in Ferrites , 1952 .

[41]  L. Néel,et al.  Propriétés magnétiques des ferrites ; ferrimagnétisme et antiferromagnétisme , 1948 .