492 research outputs found

    Electromagnons in the multiferroic state of perovskite manganites with symmetric-exchange striction

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    We have investigated electrically-active magnetic excitations (electromagnons) in perovskite manganites with the EE-type (up-up-down-down) spin structure by terahertz spectroscopy. Eu1−x_{1-x}Yx_xMnO3_3 (0.1≤x≤\le x\le1) and Y1−y_{1-y}Luy_yMnO3_3 (0≤y≤\le y\le1) without magnetic ff-moments, which host collinear sinusoidal, AA-type, cycloidal, and EE-type spin orders, are used to examine the systematics of possible electromagnons. Three-peak structures (23, 35, 45 cm−1^{-1}) of magnetic origin show up in the EE-type phase with little composition (yy) dependence of frequencies, making a contrast with the electromagnons observed in the cycloidal-spin (x≤0.8x\le0.8) phases. One of these electromagnon is ascribed to the zone-edge magnon mode based on the calculated magnon dispersions.Comment: 5 pages, 4 figure

    Electromagnons in the multiferroic state of perovskite manganites with symmetric-exchange striction

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    We have investigated electrically-active magnetic excitations (electromagnons) in perovskite manganites with the EE-type (up-up-down-down) spin structure by terahertz spectroscopy. Eu1−x_{1-x}Yx_xMnO3_3 (0.1≤x≤\le x\le1) and Y1−y_{1-y}Luy_yMnO3_3 (0≤y≤\le y\le1) without magnetic ff-moments, which host collinear sinusoidal, AA-type, cycloidal, and EE-type spin orders, are used to examine the systematics of possible electromagnons. Three-peak structures (23, 35, 45 cm−1^{-1}) of magnetic origin show up in the EE-type phase with little composition (yy) dependence of frequencies, making a contrast with the electromagnons observed in the cycloidal-spin (x≤0.8x\le0.8) phases. One of these electromagnon is ascribed to the zone-edge magnon mode based on the calculated magnon dispersions.Comment: 5 pages, 4 figure

    Modelling of platelet aggregation in aneurysm

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    Thrombi are often found in aneurysms and are considered to play an important role in rupture. It is crucial to scrutinise any correlation between the probability of rupture and the extent to which thrombi are generated in the aneurysm. Numerical techniques such as computational fluid dynamics (CFD) are promising tools in the biomedical field. However, there are, at present, no models that allow us to evaluate thrombus generation. The authors aim at the proposal of such a model. In the present study, the process of platelet aggregation is considered. In blood flow near the entry to an aneurysm, red blood cells are haemolysed due to high shear stress or high pressure. The ensuing release of adenosine diphosphate (ADP) induces the aggregation. Making reference to actual aggregation curves of human plasma for various ADP concentrations, the authors have modelled the rate at which the density of aggregated platelets continues to increase in the aggregation process. A combination of CFD and the present model enables us to obtain the distribution of platelets clotting in an aneurysm

    Optical Hall Effect in the Integer Quantum Hall Regime

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    Optical Hall conductivity σxy(ω)\sigma_{xy}(\omega) is measured from the Faraday rotation for a GaAs/AlGaAs heterojunction quantum Hall system in the terahertz frequency regime. The Faraday rotation angle (∼\sim fine structure constant ∼\sim mrad) is found to significantly deviate from the Drude-like behavior to exhibit a plateau-like structure around the Landau-level filling ν=2\nu=2. The result, which fits with the behavior expected from the carrier localization effect in the ac regime, indicates that the plateau structure, although not quantized, still exists in the terahertz regime.Comment: 4 pages, 4 figure

    Electrically driven spin excitation in a ferroelectric magnet DyMnO_3

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    Temperature (5--250 K) and magnetic field (0--70 kOe) variations of the low-energy (1--10 meV) electrodynamics of spin excitations have been investigated for a complete set of light-polarization configurations for a ferroelectric magnet DyMnO3_3 by using terahertz time-domain spectroscopy. We identify the pronounced absorption continuum (1--8 meV) with a peak feature around 2 meV, which is electric-dipole active only for the light EE-vector along the a-axis. This absorption band grows in intensity with lowering temperature from the spin-collinear paraelectric phase above the ferroelectric transition, but is independent of the orientation of spiral spin plane (bcbc or abab), as shown on the original PsP_{\rm s} (ferroelectric polarization) ∥c\parallel c phase as well as the magnetic field induced Ps∥aP_{\rm s}\parallel a phase. The possible origin of this electric-dipole active band is argued in terms of the large fluctuations of spins and spin-current.Comment: New version, 11 pages including colored 8 figure

    Observation of the spin-charge thermal isolation of ferromagnetic Ga_{0.94}Mn_{0.06}As by time-resolved magneto-optical measurement

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    The dynamics of magnetization under femtosecond optical excitation is studied in a ferromagnetic semiconductor Ga_{0.94}Mn_{0.06}As with a time-resolved magneto-optical Kerr effect measurement with two color probe beams. The transient reflectivity change indicates the rapid rise of the carrier temperature and relaxation to a quasi-thermal equilibrium within 1 ps, while a very slow rise of the spin temperature of the order of 500ps is observed. This anomalous behavior originates from the thermal isolation between the charge and spin systems due to the spin polarization of carriers (holes) contributing to ferromagnetism. This constitutes experimental proof of the half-metallic nature of ferromagnetic Ga_{0.94}Mn_{0.06}As arising from double exchange type mechanism originates from the d-band character of holes
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