30,738 research outputs found

    Phonons in nanocrystalline Ni3Fe

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    Inelastic neutron-scattering spectra were measured to obtain the phonon density of states (DOS) of nanocrystalline fcc Ni3Fe. The materials were prepared by mechanical alloying, and were also subjected to heat treatments to alter their crystallite sizes and internal strains. In comparison to material with large crystallites, the nanocrystalline material shows two distinct differences in its phonon DOS. The nanocrystalline DOS was more than twice as large at energies below 15 meV. This increase was approximately proportional to the density of grain boundaries in the material. Second, features in the nanocrystalline DOS are broadened substantially. This broadening did not depend in a simple way on the crystallite size of the sample, suggesting that it has a different physical origin than the enhancement in phonon DOS at energies below 15 meV. A damped harmonic oscillator model for the phonons provides a quality factor Qu, as low as 7 for phonons in the nanocrystalline material. The difference in vibrational entropy of the bulk and nanocrystalline Ni3Fe was small, owing to competing changes in the nanocrystalline phonon DOS at low and high energies

    Phonon contributions to the entropies of hP24 and fcc Co3V

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    Inelastic neutron-scattering spectra and neutron-diffraction patterns were measured on the alloy Co3V at temperatures from 1073-1513 K, where the hP24 (ordered hexagonal) and fee structures are the equilibrium states of the alloy. Phonon density of states (DOS) curves were calculated from the inelastic-scattering spectra, allowing estimates of the vibrational entropy in the harmonic and quasiharmonic approximations. The vibrational entropy of the hP24-fcc phase transition at 1323 K was found to be 0.07k(B)/atom. The anharmonic contributions to the entropy over a temperature range of 100 K were comparable to the vibrational entropy of this phase transition. The anharmonic softening of the phonon DOS was only slightly larger for the hP24 than the fee phase, however, so the anharmonic effects contribute only slightly to the difference in entropy of the two phases. The simple Gruneisen approximation was inadequate for predicting the thermal softening of the phonon DOS

    SCT and translanguaging-to-learn: proposed conceptual integration

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    This paper arose as a result of dialogue between researchers involved in a research project undertaken across England, Finland, France, and Romania. The research aimed to improve the educational experience for Roma children in school, who face sustained racism, discrimination and poverty, alongside reduced levels of access to and inequitable outcomes in education, by focussing on translanguaging as a transformative pedagogy. A close reading of the translanguaging literature, revealed an oft assumed sociocultural understanding of learning. This paper is an exploration of the synergies and tensions between sociocultural theory as a learning theory and translanguaging as a theory of language in use and as a pedagogical approach in order to suggest a conceptual integration useful to both. In particular, we focus on the formation and form of Vygostkian inner speech, given its central role in higher mental activity such as learning. We examine movement between external speech in collaborative activity (and to oneself) to condensed inner speech in reimagining De Guerrero’s (2005) schema, by fusing translanguaging theory with Vygotskian notions of sense and meaning, and the everyday and scientific concepts. We also consider translanguaging in joint activity in terms of neo-Vygotskian notions of cumulative and exploratory talk, arguing the usefulness of microgenetic analysis to reveal learning in action within joint activity. The paper therefore provides both a renewal of sociocultural understandings of language and learning, alongside conceptual tools for a more refined and robust articulation and analysis of the operation of translanguaging to learn

    Wakes in stratified flow past a hot or cold two-dimensional body

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    This paper considers the general problem of laminar, steady, horizontal, Oseen flow at large distances upstream and downstream of a two-dimensional body which is represented as a line source of horizontal or vertical momentum, or as a line heat source or heat dipole. The fluid is assumed to be incompressible, diffusive, viscous and stably stratified. The analysis is focused on the general properties of the horizontal velocity component, as well as on explicit calculation of the horizontal velocity profiles and disturbance stream-function fields for varying degrees of stratification. For stable stratifications, the flow fields for all four types of singularities exhibit the common feature of multiple recirculating rotors of finite thicknesses, which leads to an alternating jet structure both upstream and downstream for the horizontal velocity component and to leewaves downstream in the overall flow. The self-similar formulae for the velocity, temperature and pressure at very large distances upstream and downstream are also derived and compared with the Oseen solutions

    Bigger Bursts From Merging Neutron Stars

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    GRB 990123 may have radiated more than one solar mass equivalent in just its gamma emissions. Though this may be within the upper limit of the binding energy available from neutron stars in the Schwarzschild metric, it is difficult to imagine a process with the required efficiency of conversion to gamma rays. Neutron stars of ~10 solar mass are permitted in the Yilmaz metric. A merger of two neutron stars of maximum mass could release approximately 10 solar mass equivalent binding energy.Comment: 5 pages, 1 figure, submitted to ApJ Letter

    A small angle neutron scattering and Mössbauer spectrometry study of magnetic structures in nanocrystalline Ni3Fe

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    Results are reported from small angle neutron scattering and Mössbauer spectrometry measurements on nanocrystalline Ni3Fe. The nanocrystalline materials were prepared by mechanical attrition and studied in the as-milled state, after annealing at 265 °C to relieve internal stress, and after annealing 600 °C to prepare a control sample comprising large crystals. The small angle neutron scattering (SANS) measurements were performed for a range of applied magnetic fields. Small differences were found in how the different samples reached magnetic saturation. From the SANS data obtained at magnetic saturation, we found little difference in the nuclear scattering of the as-milled material and the material annealed at 265 °C. Reductions in nuclear scattering and magnetic scattering were observed for the control sample, and this was interpreted as grain growth. The material annealed at 265 °C also showed a reduction in magnetic SANS compared to the as-milled material. This was interpreted as an increase in magnetic moments of atoms at the grain boundaries after a low temperature annealing. Both Mössbauer spectroscopy and small angle neutron scattering showed an increase in the grain boundary magnetic moments after the 265 °C annealing (0.2 and 0.4µB/atom, respectively), even though there was little change in the grain boundary atomic density

    Translanguaging as a political act with Roma: carving a path between pluralism and collectivism for transformation

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    Translanguaging claims to advance social justice as a transformative pedagogy. This paper analyses a tension which developed over the life span of a European research project which aimed to improve the educational experience for Eastern European Roma pupils through teachers’ employment of a translanguaging pedagogy. Roma are ethnically and linguistically heterogeneous, but as a minority group face continued racism, whilst Roma pupils face educational exclusion. The voices of Roma parents, pupils and activists and academics alerted us to potential threats in utilising translanguaging as a political act for transformation in education. They revealed a central tension between recognition of linguistic pluralism for emancipation at school level (with possibilities for policy level changes at local or national levels) and unifying endeavours for collective action towards equality and human rights at a (trans)national level. To understand this tension we reframed it in light of the postmodernist positioning of translanguaging, and critiques of the de-politicizing tendencies of postmodernism. In proposing a way forward for research and pedagogy, we carve a path between pluralism and collectivism by placing translanguaging pedagogy and associated research into Nancy Fraser’s integrative model of recognition and redistribution for transformation

    A simple theory for quantum quenches in the ANNNI model

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    In a recent numerical study by Haldar et al. (Phys. Rev. X 11, 031062) it was shown that signatures of proximate quantum critical points can be observed at early and intermediate times after certain quantum quenches. Said work focused mainly on the case of the axial next-nearest neighbour Ising (ANNNI) model. Here we construct a simple time-dependent mean-field theory that allows us to obtain a quantitatively accurate description of these quenches at short times, which for reasons we explain remains a fair approximation at late times (with some caveats). Our approach provides a simple framework for understanding the reported numerical results as well as fundamental limitations on detecting quantum critical points through quench dynamics. We moreover explain the origin of the peculiar oscillatory behaviour seen in various observables as arising from the formation of a long-lived bound state.Comment: 25 pages, 13 figure

    Transport theory yields renormalization group equations

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    We show that dissipative transport and renormalization can be described in a single theoretical framework. The appropriate mathematical tool is the Nakajima-Zwanzig projection technique. We illustrate our result in the case of interacting quantum gases, where we use the Nakajima-Zwanzig approach to investigate the renormalization group flow of the effective two-body interaction.Comment: 11 pages REVTeX, twocolumn, no figures; revised version with additional examples, to appear in Phys. Rev.
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