157 research outputs found

    Bending strain-tunable magnetic anisotropy in Co2FeAl Heusler thin film on Kapton

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    Bending effect on the magnetic anisotropy in 20 nm Co2_{2}FeAl Heusler thin film grown on Kapton\textregistered{} has been studied by ferromagnetic resonance and glued on curved sample carrier with various radii. The results reported in this letter show that the magnetic anisotropy is drastically changed in this system by bending the thin films. This effect is attributed to the interfacial strain transmission from the substrate to the film and to the magnetoelastic behavior of the Co2_{2}FeAl film. Moreover two approaches to determine the in-plane magnetostriction coefficient of the film, leading to a value that is close to λCFA=14×106\lambda^{CFA}=14\times10^{-6}, have been proposed.Comment: 4 pages, 4 figure

    Strong Reduction of the Field-Dependent Microwave Surface Resistance in YBCO with BaZrO_3 Inclusions

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    We present measurements of the magnetic field dependent microwave surface resistance in laser-ablated YBa2_2Cu3_3O7δ_{7-\delta} films on SrTiO3_3 substrates. BaZrO3_3 crystallites were included in the films using composite targets containing BaZrO3_3 inclusions with mean grain size smaller than 1 μ\mum. X-ray diffraction showed single epitaxial relationship between BaZrO3_3 and YBa2_2Cu3_3O7δ_{7-\delta}. The effective surface resistance was measured at 47.7 GHz for 60<T<< T <90 K and 0<μ0H<< \mu_0H <0.8 T. The magnetic field had a very different effect on pristine YBa2_2Cu3_3O7δ_{7-\delta} and YBa2_2Cu3_3O7δ_{7-\delta}/BaZrO3_3, while for μ0H=\mu_0H=0 only a reduction of TcT_c in the YBa2_2Cu3_3O7δ_{7-\delta}/BaZrO3_3 film was observed, consistent with dc measurements. At low enough TT, in moderate fields YBa2_2Cu3_3O7δ_{7-\delta}/BaZrO3_3 exhibited an intrinsic thin film resistance lower than the pure film. The results clearly indicate that BaZrO3_3 inclusions determine a strong reduction of the field-dependent surface resistance. From the analysis of the data in the framework of simple models for the microwave surface impedance in the mixed state we argue that BaZrO3_3 inclusions determine very steep pinning potentials.Comment: LaTeX, 6 pages, 4 figures, uses jpconf.cls and jpconf11.clo class files, talk given at EUCAS 2007, submitted to J. Phys.: Conf. Serie

    Changing Microspatial Patterns of Sulfate-Reducing Microorganisms (SRM) during Cycling of Marine Stromatolite Mats

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    Microspatial arrangements of sulfate-reducing microorganisms (SRM) in surface microbial mats (~1.5 mm) forming open marine stromatolites were investigated. Previous research revealed three different mat types associated with these stromatolites, each with a unique petrographic signature. Here we focused on comparing “non-lithifying” (Type-1) and “lithifying” (Type-2) mats. Our results revealed three major trends: (1) Molecular typing using the dsrA probe revealed a shift in the SRM community composition between Type-1 and Type-2 mats. Fluorescence in-situ hybridization (FISH) coupled to confocal scanning-laser microscopy (CSLM)-based image analyses, and 35SO42−-silver foil patterns showed that SRM were present in surfaces of both mat types, but in significantly (p \u3c 0.05) higher abundances in Type-2 mats. Over 85% of SRM cells in the top 0.5 mm of Type-2 mats were contained in a dense 130 µm thick horizontal layer comprised of clusters of varying sizes; (2) Microspatial mapping revealed that locations of SRM and CaCO3 precipitation were significantly correlated (p \u3c 0.05); (3) Extracts from Type-2 mats contained acylhomoserine-lactones (C4- ,C6- ,oxo-C6,C7- ,C8- ,C10- ,C12- , C14-AHLs) involved in cell-cell communication. Similar AHLs were produced by SRM mat-isolates. These trends suggest that development of a microspatially-organized SRM community is closely-associated with the hallmark transition of stromatolite surface mats from a non-lithifying to a lithifying state

    Complex dynamics in a simple model of pulsations for Super-Asymptotic Giant Branch Stars

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    When intermediate mass stars reach their last stages of evolution they show pronounced oscillations. This phenomenon happens when these stars reach the so-called Asymptotic Giant Branch (AGB), which is a region of the Hertzsprung-Russell diagram located at about the same region of effective temperatures but at larger luminosities than those of regular giant stars. The period of these oscillations depends on the mass of the star. There is growing evidence that these oscillations are highly correlated with mass loss and that, as the mass loss increases, the pulsations become more chaotic. In this paper we study a simple oscillator which accounts for the observed properties of this kind of stars. This oscillator was first proposed and studied by Icke et al. [Astron.Astrophys. 258, 341 (1992)] and we extend their study to the region of more massive and luminous stars - the region of Super-AGB stars. The oscillator consists of a periodic nonlinear perturbation of a linear Hamiltonian system. The formalism of dynamical systems theory has been used to explore the associated Poincare map for the range of parameters typical of those stars. We have studied and characterized the dynamical behaviour of the oscillator as the parameters of the model are varied, leading us to explore a sequence of local and global bifurcations. Among these, a tripling bifurcation is remarkable, which allows us to show that the Poincare map is a nontwist area preserving map. Meandering curves, hierarchical-islands traps and sticky orbits also show up. We discuss the implications of the stickiness phenomenon in the evolution and stability of the Super-AGB stars.Comment: 13 pages, 9 figure
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