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Black Hole Formation in X-Ray Binaries: The Case of XTE J1118+480

机译:X射线二进制文件中的黑洞形成:XTE J1118 + 480的情况

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In recent years, an increasing number of proper motions have been measured for Galactic X-ray binaries. When supplemented with accurate determinations of the component masses, orbital period, and donor luminosity and effective temperature, these kinematical constraints harbor a wealth of information on the systems' past evolution. The constraints on compact object progenitors and kicks derived from this are of immense value for understanding compact object formation and exposing common threads and fundamental differences between black hole and neutron star formation. Here, we present the results of such an analysis for the black hole X-ray binary XTE J1118+480. We present results from modeling the mass transfer phase, following the motion in the Galaxy back to the birth site of the black hole, and examining the dynamics of symmetric and asymmetric core-collapses of the black hole progenitor.
机译:近年来,对银河X射线二进制文件测量了越来越多的运动。当补充组分质量,轨道周期和供体亮度和有效温度的准确测定时,这些运动限制涉及系统过去演化的丰富信息。紧凑型对象祖细胞和源于这的踢球的约束具有巨大的价值,用于了解紧凑的物体形成和暴露黑洞和中子星形成之间的常见螺纹和基本差异。在这里,我们介绍了黑洞X射线二进制XTE J1118 + 480的这种分析的结果。我们呈现出质量转移阶段的结果,按照星系的运动返回到黑洞的出生部位,并检查黑洞祖细胞的对称和不对称芯塌陷的动态。

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