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Probing General Relativity with Accreting Black Holes

机译:探测与压力的黑洞相对性

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Most of the X-ray emission from luminous accreting black holes emerges from within 20 gravitational radii. The effective emission radius is several times smaller if the black hole is rapidly spinning. General Relativistic effects can then be very important. Large spacetime curvature causes strong lightbending and large gravitational redshifts. The hard X-ray, power-law-emitting corona irradiates the accretion disc generating an X-ray reflection component. Atomic features in the reflection spectrum allow gravitational redshifts to be measured. Time delays between observed variations in the power-law and the reflection spectrum (reverberation) enable the physical scale of the reflecting region to be determined. The relative strength of the reflection and power-law continuum depends on light bending. All of these observed effects enable the immediate environment of the black hole where the effects of General Relativity are on display to be probed and explored.
机译:来自发光的黑洞的大部分X射线发射从20重量的重力线路内出现。如果黑洞正在快速旋转,有效的发射半径几倍倍。一般相对论的效果可以非常重要。大型空间曲率导致强烈的光线和大引力射频。硬X射线,电力法发射电晕照射产生X射线反射组分的吸积盘。反射光谱中的原子特征允许测量引力的红移。观察到的幂律和反射谱(混响)之间观察变化之间的时间延迟使得能够确定反射区域的物理比例。反射和动力法连续的相对强度取决于光弯曲。所有这些观察到的效果都能够探测和探索一般相对性的效果的黑洞的立即环境。

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