12,209 research outputs found

    Chromomagnetic Instability and Induced Magnetic Field in Neutral Two-Flavor Color Superconductivity

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    We find that the chromomagnetic instability existing in neutral two- flavor color superconductivity at moderate densities is removed by the formation of an inhomogeneous condensate of charged gluons and the corresponding induction of a magnetic field. It is shown that this inhomogeneous ground state is energetically favored over a homogeneous one. The spontaneous induction of a magnetic field in a color superconductor at moderate densities can be of interest for the astrophysics of compact stellar objects exhibiting strong magnetic fields as magnetars.Comment: Version to appear in PR

    Magnetic Response in Anyon Fluid at High Temperature

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    The magnetic response of the charged anyon fluid at temperatures lower and larger than the fermion enery gap ωc\omega_{c} is investigated in the self-consistent field approximation. We prove that the anyon system with boundaries exhibits a total Meissner effect at temperatures smaller than the fermion energy gap (T≪ωcT\ll \omega_{c}). The London penetration length at TT ∼200K\sim 200K is of the order λ∼10−5cm\lambda \sim 10^{-5}cm. At T≫ωcT\gg \omega_{c} a new phase, characterized by an inhomogeneous magnetic penetration, is found. We conclude that the energy gap, ωc,\omega_{c}, defines a scale that separates two phases: a superconducting phase at T≪ωcT\ll \omega_{c}, and a non-superconducting one at T≫ωcT\gg \omega_{c}.Comment: 7 pages, Talk presented at SILAFAE'98. April 8-11, 1998, San Juan, Puerto Ric

    Novel Topological Effects in Dense QCD in a Magnetic Field

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    We study the electromagnetic properties of dense QCD in the so-called Magnetic Dual Chiral Density Wave phase. This inhomogeneous phase exhibits a nontrivial topology that comes from the fermion sector due to the asymmetry of the lowest Landau level modes. The nontrivial topology manifests in the electromagnetic effective action via a chiral anomaly term  θFμνF~μν~\theta F^{\mu\nu}\tilde{F}_{\mu\nu}, with a dynamic axion field θ\theta given by the phase of the dual chiral density wave condensate. The coupling of the axion with the electromagnetic field leads to several macroscopic effects that include, among others, an anomalous, nondissipative Hall current, an anomalous electric charge, magnetoelectricity, and the formation of a hybridized propagating mode known as an axion polariton. Connection to topological insulators and Weyls semimetals, as well as possible implications for heavy-ion collisions and neutron stars are all highlighted.Comment: Section 3 completely revised, discussions added, and typos correcte

    Effects of Bose-Einstein Condensation on forces among bodies sitting in a boson heat bath

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    We explore the consequences of Bose-Einstein condensation on two-scalar-exchange mediated forces among bodies that sit in a boson gas. We find that below the condensation temperature the range of the forces becomes infinite while it is finite at temperatures above condensation.Comment: 10 pages, 2 figure
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