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The Variable Quiescence of Centaurus X-4

机译:半人马座X-4的可变静态

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摘要

Centaurus X-4 is one of the best-studied low-mass neutron star transients in quiescence. Thanks to XMM-Newton's large throughput, Centaurus X-4 was observed at the highest signal-to-noise ratio ever. This allowed us to discern rapid (100 s), large (45% ± 7% rms in the 10-4 to 1 Hz range) intensity variability, especially at low energies. In order to highlight the cause of this variability, we divided the data into intensity intervals and fit the resulting spectra with the canonical model for neutron star transients in quiescence, i.e., an absorbed power law plus a neutron star atmosphere. The fit is consistent with a variable column density plus variability in (at least) one of the spectral models. Variations in the neutron star atmosphere might suggest that accretion onto the active millisecond radio pulsar emitting X-rays at the shock between a radio pulsar wind and inflowing matter from the companion star.
机译:半人马座X-4是静态研究最深入的低质量中子星瞬变之一。由于XMM-Newton的高吞吐率,Centaurus X-4的信噪比达到了历史最高。这使我们能够辨别出快速的(> 100 s),大的(在10-4至1 Hz范围内为45%±7%rms)强度变化,尤其是在低能量情况下。为了突出这种变化的原因,我们将数据划分为强度间隔,并使用静态中子星瞬变的典型模型(即吸收功率定律和中子星大气)对所得光谱进行拟合。该拟合与(至少)一个光谱模型中的可变柱密度加可变性一致。中子星大气的变化可能表明,在射电脉冲星风和伴星流入的物质之间的冲击下,活动的毫秒级射电脉冲星上会积聚X射线。

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