73 research outputs found

    Coherent Emission from Magnetars

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    It is proposed that magnetospheric currents above the surfaces of magnetars radiate coherent emission in analogy to pulsars. Scaling the magnetospheric parameters suggests that the coherent emission from magnetars would emerge in the infra-red or optical

    On convergence of the ChPT HFF expansion for one loop contribution to meson production in NN collisions

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    We consider the application of heavy fermion formalism based chiral perturbation theory to meson production in nucleon-nucleon collisions. It is shown that for one loop contributions the heavy fermion formalism expansion corrections for the nucleon propagator produce infinite series of correction terms which are of the same momentum power order. This destroys the one-to-one correspondence between the perturbative and small momentum expansion and thus negates the application of any finite order heavy fermion formalism chiral perturbation theory to the NN→NNπNN\to NN \pi reactions.Comment: 13 pages, 3figure

    Effective Chiral Theory for Pseudoscalar and Vector Mesons

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    We consider the vector meson mixing scheme and mass splitting within the framework of an extended U(3)L⨂U(3)RU(3)_L\bigotimes U(3)_R chiral effective field theory based on the hidden local symmetry approach where, the pseudoscalar and vector meson nonets play the role of dynamic variables. Unlike other variants of this model, we show that the diagonalization of the vector meson mass matrix and the assumption that its eigenvalues are identical with the physical meson masses, determines the mixing scheme as well as the model free parameters. We show that VMD can be derived from our lagrangian and that for electromagnetic processes at low momenta the VMD model is a good first approximation. The model reproduces nicely the radii of the charged pions and kaons.Comment: 12 pages, 1 figur
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