139 research outputs found

    Investigation of the magnetic structure and crystal field states of pyrochlore antiferromagnet Nd2Zr2O7

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    We present synchrotron x-ray diffraction, neutron powder diffraction and time-of-flight inelastic neutron scattering measurements on the rare earth pyrochlore oxide Nd2Zr2O7 to study the ordered state magnetic structure and cystal field states. The structural characterization by high-resolution synchrotron x-ray diffraction confirms that the pyrochlore structure has no detectable O vacancies or Nd/Zr site mixing. The neutron diffraction reveals long range all-in/all-out antiferromagnetic order below T_N ~ 0.4 K with propagation vector k = (0 0 0) and an ordered moment of 1.26(2) \mu_B/Nd at 0.1 K. The ordered moment is much smaller than the estimated moment of 2.65 \mu_B/Nd for the local Ising ground state of Nd3+ (J=9/2) suggesting that the ordering is partially suppressed by quantum fluctuations. The strong Ising anisotropy is further confirmed by the inelastic neutron scattering data which reveals a well-isolated dipolar-octupolar type Kramers doublet ground state. The crystal field level scheme and ground state wavefunction have been determined.Comment: 12 pages, 15 figures, 2 table

    Antiferromagnetic ordering and dipolar interactions of YbAlO3_3

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    In this paper we report low-temperature magnetic properties of the rare-earth perovskite material YbAlO3_3. Results of elastic and inelastic neutron scattering experiment, magnetization measurements along with the crystalline electrical field (CEF) calculations suggest that the ground state of Yb moments is a strongly anisotropic Kramers doublet, and the moments are confined in the abab-plane, pointing at an angle of φ=±23.5∘\varphi = \pm 23.5^{\circ} to the aa-axis. With temperature decreasing below TN=0.88T_{\rm N}=0.88 K, Yb moments order into the coplanar, but non-collinear antiferromagnetic (AFM) structure AxGyAxGy, where the moments are pointed along their easy-axes. In addition, we highlight the importance of the dipole-dipole interaction, which selects the type of magnetic ordering and may be crucial for understanding magnetic properties of other rare-earth orthorhombic perovskites. Further analysis of the broad diffuse neutron scattering shows that one-dimensional interaction along the cc-axis is dominant, and suggests YbAlO3_3 as a new member of one dimensional quantum magnets.Comment: 8 pages, 6 figure

    Transverse dynamics of water across the melting point: A parallel neutron and x-ray inelastic scattering study

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    Joint inelastic neutron and x-ray scattering measurements have been performed on heavy water across the melting point. The spectra bear clear evidence of low- and high-frequency inelastic shoulders related to transverse and longitudinal modes, respectively. Upon increasing the momentum transfer, the spectral shape evolves from a viscoelastic regime, where the low-frequency mode is clearly over-damped, toward an elastic one where its propagation becomes instead allowed. The crossover between the two regimes occurs whenever both the characteristic frequency and the linewidth of the low-frequency mode match the inverse of the structural relaxation time. Furthermore, we observe that the frequency of the transverse mode undergoes a discontinuity across the melting, whose extent reduces upon increasing the exchanged momentum

    Magnetic ground state of the Ising-like antiferromagnet DyScO3_3

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    We report the low temperature magnetic properties of the DyScO3_3 perovskite, which were characterized by means of single crystal and powder neutron scattering, and by magnetization measurements. Below TN=3.15T_{\mathrm{N}}=3.15 K, Dy3+^{3+} moments form an antiferromagnetic structure with an easy axis of magnetization lying in the abab-plane. The magnetic moments are inclined at an angle of ∼±28∘\sim\pm{28}^{\circ} to the bb-axis. We show that the ground state Kramers doublet of Dy3+^{3+} is made up of primarily ∣±15/2⟩|\pm 15/2\rangle eigenvectors and well separated by crystal field from the first excited state at E1=24.9E_1=24.9 meV. This leads to an extreme Ising single-ion anisotropy, M⊥/M∥∼0.05M_{\perp}/M_{\|}\sim{0.05}. The transverse magnetic fluctuations, which are proportional to M⊥2/M∥2M^{2}_{\perp}/M^{2}_{\|}, are suppressed and only moment fluctuations along the local Ising direction are allowed. We also found that the Dy-Dy dipolar interactions along the crystallographic cc-axis are 2-4 times larger than in-plane interactions.Comment: 9 pages and 6 figures; to be published in Phys. Rev.

    Arc tracking of cables for space applications

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    The main objective of this study is to develop a new test method that is suitable for the assessment of the resistance of aerospace cables to arc tracking for different specific environmental and network conditions of spacecrafts. This paper reports the purpose, test conditions, test specimen, test procedure, and test acceptance criteria of seven different (200-250 mm long) cables
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