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Ferromagnetic insulator

Ando Y, Murai J, Miyazaki T (1999) Analysis of the interface in ferromagnet/insulator junctions by inelastic-electron-tunneling-spectroscopy. J Magn Magn Mater 198-199 161-163... [Pg.212]

Figure 6.38 Variation of (TJ of various rare-earth manganates with weighted average radius of the A-site cations, (After Mahesh et ai, 1995). The area in the bottom left hand corner represents the ferromagnetic insulator regime. Figure 6.38 Variation of (TJ of various rare-earth manganates with weighted average radius of the A-site cations, <r > (After Mahesh et ai, 1995). The area in the bottom left hand corner represents the ferromagnetic insulator regime.
Fig. 13.3. The phase diagram of Ao.33A o.67Mn03 (A = divalent cation, A = rare earth) as a function of temperature and the global instability index of the idealized perovskite structure. The points show the observed transition temperatures in various compounds. FMM = ferromagnetic metal, PMI = paramagnetic insulator, FMI = ferromagnetic insulator (from Rao et al. 1998). Fig. 13.3. The phase diagram of Ao.33A o.67Mn03 (A = divalent cation, A = rare earth) as a function of temperature and the global instability index of the idealized perovskite structure. The points show the observed transition temperatures in various compounds. FMM = ferromagnetic metal, PMI = paramagnetic insulator, FMI = ferromagnetic insulator (from Rao et al. 1998).
Fig. 28. Tentative phase diagram for LaMnC)3+5, 0 < <5 < 0.18. Data from Topfer and Goodenough (1997b). PI = paramagnetic insulator, CAFI = canted-spin antiferromagnetic (A-type) insulator, SGI = spin-glass insulator, FI = ferromagnetic insulator, MCS = metamagnetic canted-spin configuration. Fig. 28. Tentative phase diagram for LaMnC)3+5, 0 < <5 < 0.18. Data from Topfer and Goodenough (1997b). PI = paramagnetic insulator, CAFI = canted-spin antiferromagnetic (A-type) insulator, SGI = spin-glass insulator, FI = ferromagnetic insulator, MCS = metamagnetic canted-spin configuration.
Stamp PCE (1991) Quantum dynamics and tuimeling of domain walls in ferromagnetic insulators. Phys Rev Lett 66 2802-2805... [Pg.290]

The ferromagnetic properties of layer perovskites (RNH3)2(CrXJ, where R is an alkyl or aryl group and X = Cl or Br, are of considerable interest because only a few samples of ferromagnetic insulators are known. In addition, they are transparent in the visible region, and therefore they are interesting not only for academic reasons but also because of their potential technological applications in optical modulation devices. ... [Pg.188]

OSCILLATIONS OF MAGNETORESISTANCE IN FERROMAGNETIC/INSULATOR/FERROMAGNETIC STRUCTURES... [Pg.56]

The aim of the work is theoretical analysis of dispersion influence on spin-dependent electron transport in ferromagnetic/insulator/ferromagnetic (FIF) structures taking into account the potential distribution, applied voltage and image forces effects. [Pg.56]


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See also in sourсe #XX -- [ Pg.755 ]

See also in sourсe #XX -- [ Pg.273 ]

See also in sourсe #XX -- [ Pg.273 ]




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Ferromagnet-insulator-superconductor

Ferromagnetic

Ferromagnetism

Transition from ferromagnetic insulator

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