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Upper critical field and (non)-superconductivity of magnetars

机译:磁场的上临界场和(非) - 磁场的耗电量

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摘要

We construct equilibrium models of compact stars using a realistic equation of state and obtain the density range occupied by the proton superconductor in strong B-fields. We do so by combining the density profiles of our models with microscopic calculations of proton pairing gaps and the critical unpairing field H (c2) above which the proton type-II superconductivity is destroyed. We find that magnetars with interior homogeneous field within the range 0.1 a parts per thousand currency sign B (16) a parts per thousand currency sign 2, where B (16) = B/10(16) G, are partially superconducting, whereas those with B (16) > 2 are void of superconductivity. We briefly discuss the neutrino emissivity and superfluid dynamics of magnetars in the light of their (non)-superconductivity.
机译:我们使用状态的现实方程构建紧凑型恒星的平衡模型,并获得强B字段中质子超导体占据的密度范围。 我们通过将模型的密度谱结合在于具有质子配对间隙的微观计算和上述临界未配位领域H(C2)的微观计算来这样做。 我们发现具有内部均匀场的磁磁场范围内0.1个零件零件符号B(16)份数千核符号2,其中B(16)= B / 10(16)G是部分超导,而那些 B(16)> 2具有超导性的空隙。 我们鉴于它们(非) - 余电压逐渐讨论磁铁的中微氨基发射率和超流动力学。

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