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Properties of matter in ultrahigh magnetic fields and the structure of the surface of neutron stars

机译:超高磁场中物质的性质和中子星表面的结构

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The physical properties of atoms, molecules, and solids in ultrahigh magnetic fields B 109 G that are believed to exist on the surface of neutron stars are discussed. In these fields, atoms are strongly deformed and elongated along the magnetic field lines; the binding energy and ionizing energy of the atoms are substantially increased and the interatomic interaction is dramatically changed. This strongly modifies the properties of matter at the surface of magnetic neutron stars which are crucial for modelling the pulsar magnetosphere. A scenario for magnetosphere evolution is proposed which suggests free emission for a young pulsar and strong binding of the matter to the surface at a later stage. This later stage is due to strongly bound chains of alternate heavy atoms and light atoms accreted on the surface of the star.
机译:讨论了认为在中子星表面存在的B 109 G超高磁场中原子,分子和固体的物理特性。在这些场中,原子沿磁场线发生强烈变形并伸长。原子的结合能和电离能大大提高,原子间的相互作用发生了巨大变化。这极大地改变了中子星的表面物质的性质,这对于建模脉冲星磁层至关重要。提出了一个磁层演化的方案,该方案提出了年轻脉冲星的自由发射以及在较晚阶段物质与表面的牢固结合。后面的阶段是由于恒星表面上积聚了交替排列的重原子和轻原子的牢固结合的链。

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