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Constraints of the compactness of the isolated neutron stars via X-ray phase-resolved spectroscopy

机译:通过X射线相位分辨光谱分析孤立中子恒星的紧凑性的约束

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A model with a condensed iron surface and partially ionized hydrogen-thin atmosphere allows us to fit simultaneously the observed general spectral shape and the broad absorption feature (observed at 0.3 keV) in different spin phases of the isolated neutron star RBS 1223. We constrain some physical properties of the X-ray emitting areas, i.e. the temperatures (T_(pole1) ~ 105eV,T_(pole2) ~ 99 eV), magnetic field strengths (B_(pole1) ≈B_(pole2) ~ 8.6 x 10~(13) G) at the poles, and their distribution parameters (al ~ 0:61, a2 ~ 0.29, indicating an absence of strong toroidal magnetic field component). In addition, we are able to place some constraints on the geometry of the emerging X-ray emission and the gravitational redshift (z ~ 0.16~(0.03)_(0.01)) of the isolated neutron star RBS 1223.
机译:具有稠合的铁表面和部分电离的氢气薄气氛的模型使我们同时适合观察到的一般光谱形状和在孤立的中子星RBS 1223的不同自旋相的不同自旋阶段的宽吸收特征(观察到0.3keV)。我们约束一些X射线发射区域的物理性质,即温度(T_(杆)〜105EV,T_(POLE2)〜99eV),磁场强度(B_(POLE1)≈B_(POLE2)〜8.6 x 10〜(13 )g)在极点,其分布参数(Al〜0:61,A2〜0.29,表示不存在强环形磁场分量)。此外,我们能够对X射线发射的几何形状和被隔离的中子星RBS 1223的重力射频(Z〜0.16〜(0.03))的几何形状放置一些约束。

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