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首页> 外文期刊>Central European Journal of Physics >The Carter constant for inclined orbits about a massive Kerr black hole: Near-circular, near-polar orbits
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The Carter constant for inclined orbits about a massive Kerr black hole: Near-circular, near-polar orbits

机译:卡特常数关于克尔黑洞的倾斜轨道:近圆形,近极轨道

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摘要

In an extreme mass-ratio binary black hole system, a non-equatorial orbit will list (i. e. increase its angle of inclination, i) as it evolves in Kerr spacetime. The abutment, a set of evolving, near-polar, retrograde orbits, for which the instantaneous Carter constant (Q) is at its maximum value (Q_X) for given values of latus rectum (l?) and eccentricity (e), has been introduced as a laboratory in which the consistency of dQ/dt with corresponding evolution equations for dl?/dt and de/dt might be tested independently of a specific radiation back-reaction model. To demonstrate the use of the abutment as such a laboratory, a derivation of dQ/dt, based only on published formulae for dl?/dt and de/dt, was performed for elliptical orbits on the abutment. The resulting expression for dQ/dt matched the published result to the second order in e. We believe the abutment is a potentially useful tool for improving the accuracy of evolution equations to higher orders of e and l? -.
机译:在极端质量比的二元黑洞系统中,非赤道轨道会随着其在Kerr时空中的演化而列出(即,增加其倾斜角i)。基台是一组不断演化的近极逆行轨道,对于给定的直肠直肠(l?)和偏心率(e),其瞬时卡特常数(Q)处于最大值(Q_X)。作为实验室引入的,其中可以独立于特定的辐射后反应模型测试dQ / dt与dl?/ dt和de / dt的相应演化方程的一致性。为了证明将基台用作这样的实验室,仅对基台上的椭圆轨道进行了dQ / dt的推导,仅基于公开的dl?/ dt和de / dt公式。 dQ / dt的结果表达式使发布的结果与e中的二阶匹配。我们认为,基台是将演化方程的精度提高到e和l的更高阶的潜在有用工具。 -

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