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首页> 外文期刊>The Astrophysical journal >General Relativistic Geodetic Spin Precession in Binary Pulsar B1913+16: Mapping the Emission Beam in Two Dimensions
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General Relativistic Geodetic Spin Precession in Binary Pulsar B1913+16: Mapping the Emission Beam in Two Dimensions

机译:二元脉冲星B1913 + 16中的广义相对论大地自旋进动:二维映射发射束

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摘要

We have carefully measured the pulse profile of the binary pulsar PSR B1913+16 at 21 cm wavelength for 20 years, in order to search for variations that result from general relativistic geodetic precession of the spin axis. The profile width is found to decrease with time in its inner regions, while staying essentially constant on its outer skirts. We fitted these data to a model of the beam shape and precession geometry. Four equivalent solutions are found, but evolutionary considerations and polarization data select a single preferred model. While the current data sample only a limited range of latitudes owing to the long precessional cycle, the preferred model shows a beam elongated in the latitudinal direction and hourglass-shaped.
机译:我们已经仔细测量了20年来二进制脉冲星PSR B1913 + 16在21 cm波长下的脉冲分布,以寻找自旋轴的一般相对论性大地前倾引起的变化。发现轮廓宽度在其内部区域中随时间减小,而在其外部裙边上基本保持恒定。我们将这些数据拟合到光束形状和进动几何的模型中。找到了四个等效的解决方案,但从进化考虑和极化数据选择了一个首选模型。尽管由于进动周期长,当前的数据采样仅在有限的纬度范围内,但首选模型显示的光束沿纬度方向拉长并且呈沙漏形。

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