Successive Magnetic Phase Transitions of Component Orderings in DyB^sub 4

The successive magnetic phase transitions in DyB4 have been studied in detail by microscopic measurements using resonant X-ray diffraction and neutron scattering. It is shown that the a b-plane component of the magnetic moment is short-range-ordered in the intermediate phase where the c-axis compone...

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Published in:Journal of the Physical Society of Japan Vol. 80; no. 7; p. 1
Main Authors: Matsumura, Takeshi, Okuyama, Daisuke, Mouri, Takuya, Murakami, Youichi
Format: Journal Article
Language:English
Published: Tokyo The Physical Society of Japan 01-07-2011
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Abstract The successive magnetic phase transitions in DyB4 have been studied in detail by microscopic measurements using resonant X-ray diffraction and neutron scattering. It is shown that the a b-plane component of the magnetic moment is short-range-ordered in the intermediate phase where the c-axis component is long-range-ordered. It is estimated that this short-range order is dynamically fluctuating with a time scale between ~10^sup -8^ to ~10 ^sup -11^ s. Crystal field excitation has also been investigated by inelastic neutron scattering. To qualitatively understand the phase-transition phenomenon, we have studied a simple two-sublattice model with an antiferromagnetic interaction by mean-field calculation. The calculation, though without a quadrupolar interaction, successfully explains the occurrence of double phase transition, magnetic specific heat and entropy, magnetic susceptibility, and the huge elastic softening in the intermediate phase. The general success of the mean-field calculation, except for the short-range order, suggests that there is little effect of geometrical frustration on the macroscopic properties at zero magnetic field.
AbstractList The successive magnetic phase transitions in DyB4 have been studied in detail by microscopic measurements using resonant X-ray diffraction and neutron scattering. It is shown that the a b-plane component of the magnetic moment is short-range-ordered in the intermediate phase where the c-axis component is long-range-ordered. It is estimated that this short-range order is dynamically fluctuating with a time scale between ~10^sup -8^ to ~10 ^sup -11^ s. Crystal field excitation has also been investigated by inelastic neutron scattering. To qualitatively understand the phase-transition phenomenon, we have studied a simple two-sublattice model with an antiferromagnetic interaction by mean-field calculation. The calculation, though without a quadrupolar interaction, successfully explains the occurrence of double phase transition, magnetic specific heat and entropy, magnetic susceptibility, and the huge elastic softening in the intermediate phase. The general success of the mean-field calculation, except for the short-range order, suggests that there is little effect of geometrical frustration on the macroscopic properties at zero magnetic field.
Author Okuyama, Daisuke
Matsumura, Takeshi
Mouri, Takuya
Murakami, Youichi
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  surname: Mouri
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  givenname: Youichi
  surname: Murakami
  fullname: Murakami, Youichi
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Snippet The successive magnetic phase transitions in DyB4 have been studied in detail by microscopic measurements using resonant X-ray diffraction and neutron...
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SubjectTerms Diffraction
Geometry
Magnetic fields
Neutrons
Phase transitions
Scattering
Title Successive Magnetic Phase Transitions of Component Orderings in DyB^sub 4
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