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首页> 外文期刊>The Astrophysical journal >TESTING THE GENERAL RELATIVISTIC 'NO-HAIR' THEOREMS USING THE GALACTIC CENTER BLACK HOLE SAGITTARIUS A
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TESTING THE GENERAL RELATIVISTIC 'NO-HAIR' THEOREMS USING THE GALACTIC CENTER BLACK HOLE SAGITTARIUS A

机译:使用银河系中心黑洞SAGITTARIUS A测试广义相对论“无毛”定理

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摘要

If a class of stars orbits the central black hole in our galaxy in short-period (~0.1 yr), high-eccentricity (~0.9) orbits, they will experience precessions of their orbital planes induced by both relativistic frame dragging and the quadrupolar gravity of the hole, at levels that could be as large as 10 μas per year, if the black hole is rotating faster than half of its maximum rotation rate. Astrometric observations of the orbits of at least two such stars can in principle lead to a determination of the angular momentum vector J of the black hole and its quadrupole moment Q_2. This could lead to a test of the general relativistic no-hair theorems, which demand that Q_2 =J~2/M. Future high-precision adaptive infrared optics instruments may make such a fundamental test of the black hole paradigm possible.
机译:如果一类恒星在短周期(约0.1年),高偏心率(约0.9年)的轨道上绕我们银河系的中心黑洞轨道运行,它们将经历相对论框架拖曳和四极引力引起的轨道平面进动如果黑洞的旋转速度快于其最大旋转速度的一半,则该孔的高度每年可能高达10μs。原则上,对至少两个这样的恒星的轨道进行星体观测可以确定黑洞的角动量矢量J及其四极矩Q_2。这可能导致对一般相对论无毛定理的检验,该定理要求Q_2 = J〜2 / M。未来的高精度自适应红外光学仪器可能会使黑洞范例的这种基本测试成为可能。

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