相对论推进作为巨型黑洞二进制候选的周期性原因
Daniel J D'Orazio1, Zoltán Haiman1, David Schiminovich1
1Department of Astronomy, Columbia University, 550 West 120th Street, New York, New York 10027, USA.
Nature
|September 19, 2015
概括
天文学家在类星体PG 1302-102中发现了二进制黑洞的证据. 相对主义多普勒增强解释了它的光曲线, 表明一个紧的, 不平等的质量系统.
科学领域:
- 天体物理学
- 银河系天文学
- 黑洞物理
背景情况:
- 超大质量黑洞位于大多数大星系的中心.
- 星系的合并表明黑洞二进制系统在星系核中很常见.
- 量子星的光曲线呈现周期性, 暗示二进制星系的存在.
研究的目的:
- 调查PG 1302-102类星体光曲线中观察到的周期性.
- 要确定观察到的变化是否与二进制黑洞系统一致.
- 测试有关这些系统相对论轨道速度和光曲线行为的预测.
主要方法:
- 对类星体PG 1302-102的光曲线可变性的分析.
- 使用相对论多普勒推进从一个紧的,增量二进制光曲线的建模.
- 模型预测与存档紫外线和光学数据的比较.
主要成果:
- 观察到的PG 1302-102光曲线的振幅和正弦形状是通过相对论多普勒增强很好地适应的.
- 这种变化与紧,稳步增长,质量不平等的二进制黑洞系统是一致的.
- 预测紫外线亮度变化会跟踪光学变化,但幅度大2至3倍.
结论:
- 这些发现强烈支持类星体PG 1302-102中存在的二进制黑洞.
- 该系统可能涉及相对论轨道速度, 挑战以前关于黑洞轨道的假设.
- 未来的紫外线和光学观测可以证实这一预测并验证二进制黑洞模型.
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