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Ferromagnets canted

Mukhin et al. (2000) found that increasing Sr doping in Lai- Sr MnOs does suppress the (quasi-)ferromagnetic resonance frequency, whereas the (quasi-)AF resonance frequency is only slightly decreased (20%). This behaviour corresponds to a canted magnetic structure and its evolution with increasing x. [Pg.181]

Fig. 18. The magnetic ordering of Mn(III)-ion spins in RM11O3, R = La, Pr, Nd, Tb, Ho (and Y), in two adjacent (001) planes. Not shown is the spin canting to give a small ferromagnetic component along the c-axis for R = La, Pr, Nd. The numerical values refer to the spin periodicity just below 7n, after Brinks et al. (2001). Fig. 18. The magnetic ordering of Mn(III)-ion spins in RM11O3, R = La, Pr, Nd, Tb, Ho (and Y), in two adjacent (001) planes. Not shown is the spin canting to give a small ferromagnetic component along the c-axis for R = La, Pr, Nd. The numerical values refer to the spin periodicity just below 7n, after Brinks et al. (2001).
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.
Neutron-scattering experiments by Vasiliu-Doloc et al. (1998a) on an x = 0.15 sample showed the ferromagnetic order below 7c = 235 K developed a canted-spin structure below... [Pg.318]


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See also in sourсe #XX -- [ Pg.410 , Pg.411 , Pg.415 , Pg.419 , Pg.424 ]




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Canted-spin ferromagnetic

Canted-spin ferromagnetism

Canting

Cants

Ferromagnet

Ferromagnetic

Ferromagnetism

Weak canted-spin ferromagnetism

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