5,866 research outputs found

    On duality of the noncommutative extension of the Maxwell-Chern-Simons model

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    We study issues of duality in 3D field theory models over a canonical noncommutative spacetime and obtain the noncommutative extension of the Self-Dual model induced by the Seiberg-Witten map. We apply the dual projection technique to uncover some properties of the noncommutative Maxwell-Chern-Simons theory up to first-order in the noncommutative parameter. A duality between this theory and a model similar to the ordinary self-dual model is estabilished. The correspondence of the basic fields is obtained and the equivalence of algebras and equations of motion are directly verified. We also comment on previous results in this subject.Comment: Revtex, 9 pages, accepted for publication PL

    On the dimensional dependence of duality groups for massive p-forms

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    We study the soldering formalism in the context of abelian p-form theories. We develop further the fusion process of massless antisymmetric tensors of different ranks into a massive p-form and establish its duality properties. To illustrate the formalism we consider two situations. First the soldering mass generation mechanism is compared with the Higgs and Julia-Toulouse mechanisms for mass generation due to condensation of electric and magnetic topological defects. We show that the soldering mechanism interpolates between them for even dimensional spacetimes, in this way confirming the Higgs/Julia-Toulouse duality proposed by Quevedo and Trugenberger \cite{QT} a few years ago. Next, soldering is applied to the study of duality group classification of the massive forms. We show a dichotomy controlled by the parity of the operator defining the symplectic structure of the theory and find their explicit actions.Comment: Reference [8] has been properly place

    Fast pick up technique for high quality heterostructures of bilayer graphene and hexagonal boron nitride

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    We present a fast method to fabricate high quality heterostructure devices by picking up crystals of arbitrary sizes. Bilayer graphene is encapsulated with hexagonal boron nitride to demonstrate this approach, showing good electronic quality with mobilities ranging from 17 000 cm^2/V/s at room temperature to 49 000 cm^2/V/s at 4.2 K, and entering the quantum Hall regime below 0.5 T. This method provides a strong and useful tool for the fabrication of future high quality layered crystal devices.Comment: 5 pages, 3 figure

    A localização espacial e geográfica de alunos de ensino médio : uma investigação envolvendo o ensino de Astronomia

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    Trata-se de um estudo com enfoque na orientação espacial e geográfica de alunos de Ensino Médio de uma escola pública brasileira, tomando por base uma atividade didática que envolveu elementos astronômicos. Basicamente, tal atividade tomou como eixo central a marcação da trajetória do Sol, a partir da escola, e estabeleceu relações entre tal trajetória, os lados cardeais e sua localização num mapa do município. A partir de duas entrevistas, que ocorreram no início e no final do trabalho, identificamos as principais formas de se orientar que os alunos empregam, e analisamos a viabilidade de um trabalho desta natureza na construção, pelos alunos, de um sistema de referência mais próximo ao real

    Controlling spin relaxation in hexagonal BN-encapsulated graphene with a transverse electric field

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    We experimentally study the electronic spin transport in hBN encapsulated single layer graphene nonlocal spin valves. The use of top and bottom gates allows us to control the carrier density and the electric field independently. The spin relaxation times in our devices range up to 2 ns with spin relaxation lengths exceeding 12 μ\mum even at room temperature. We obtain that the ratio of the spin relaxation time for spins pointing out-of-plane to spins in-plane is τ⊥/τ∣∣≈\tau_{\bot} / \tau_{||} \approx 0.75 for zero applied perpendicular electric field. By tuning the electric field this anisotropy changes to ≈\approx0.65 at 0.7 V/nm, in agreement with an electric field tunable in-plane Rashba spin-orbit coupling

    Group theory analysis of electrons and phonons in N-layer graphene systems

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    In this work we study the symmetry properties of electrons and phonons in graphene systems as function of the number of layers. We derive the selection rules for the electron-radiation and for the electron-phonon interactions at all points in the Brillouin zone. By considering these selection rules, we address the double resonance Raman scattering process. The monolayer and bilayer graphene in the presence of an applied electric field are also discussed.Comment: 8 pages, 6 figure

    Avaliação de um modelo de produção orgânica de carne de cabritos para unidades familiares dos Sertões pernambucano e baiano do São Francisco.

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    O objetivo deste trabalho foi descrever e apresentar os resultados de dois anos de avaliação de um modelo experimental de produção orgânica de cabritos nas condições ago climáticas dos sertões baiano e pernambucano do São Francisco. A alimentação dos animais baseia-se no uso da vegetação da Caatinga associado ao cultivo de forrageiras tolerantes à seca, para pastejo e produção de feno e silagem, e à suplementação concentrada para oferta no período seco. O controle de ectoparasitas e verminoses foram realizados com homeopatia e fitoterapia. Os resultados evidenciam que o desempenho produtivo do modelo é superior ao desempenho de sistemas típicos de produção de caprinos da região do Vale do São Francisco
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