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首页> 外文期刊>The Astrophysical Journal. Letters >TORSIONAL OSCILLATIONS OF A MAGNETAR WITH A TANGLED MAGNETIC FIELD
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TORSIONAL OSCILLATIONS OF A MAGNETAR WITH A TANGLED MAGNETIC FIELD

机译:用缠结磁场扭转磁场的扭转振荡

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摘要

Motivated by stability considerations and observational evidence, we argue that magnetars possess highly tangled internal magnetic fields. We propose that the quasi-periodic oscillations (QPOs) seen to accompany giant flares can be explained as torsional modes supported by a tangled magnetic field, and we present a simple model that supports this hypothesis for SGR 1900+14. Taking the strength of the tangle as a free parameter, we find that the magnetic energy in the tangle must dominate that in the dipolar component by a factor of similar to 14 to accommodate the observed 28 Hz QPO. Our simple model provides useful scaling relations for how the QPO spectrum depends on the bulk properties of the neutron star and the tangle strength. The energy density in the tangled field inferred for SGR 1900+14 renders the crust nearly dynamically irrelevant, a significant simplification for study of the QPO problem. The predicted spectrum is about three times denser than observed, which could be explained by preferential mode excitation or beamed emission. We emphasize that field tangling is needed to stabilize the magnetic field, so should not be ignored in treatment of the QPO problem.
机译:通过稳定性考虑和观察证据的推动,我们认为磁石具有高度缠结的内部磁场。我们建议看到伴随巨型耀斑的准周期振荡(QPO)可以解释为纠结磁场支持的扭转模式,并且我们提出了一个支持SGR 1900 + 14的假设的简单模型。将缠结的力量作为自由参数,我们发现纠结中的磁能必须使偶极组分中的磁力占据主导地位,这是一个类似于14的一个因素,以适应观察到的28 Hz QPO。我们的简单模型提供了有用的缩放关系,了解QPO光谱如何取决于中子星的堆积性能和缠结强度。 SGR 1900 + 14推断的纠结场中的能量密度使地壳几乎动态无关,这是对QPO问题研究的显着简化。预测光谱比观察到的大约三倍,这可以通过优先模式激励或光束发射来解释。我们强调,需要稳定磁场所需的现场弯曲,因此在治疗QPO问题方面不应该被忽略。

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