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首页> 外文期刊>The Astrophysical journal >QUASI-PERIODIC OSCILLATIONS FROM MAGNETOROTATIONAL TURBULENCE
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QUASI-PERIODIC OSCILLATIONS FROM MAGNETOROTATIONAL TURBULENCE

机译:磁旋转湍流的准周期振荡

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Quasi-periodic oscillations (QPOs) in the X-ray light curves of accreting neutron star and black hole binaries have been widely interpreted as being due to standing wave modes in accretion disks. These disks are thought to be highly turbulent due to the magnetorotational instability (MRI). We study wave excitation by MRI turbulence in the shearing box geometry. We demonstrate that axisymmetric acoustic modes and radial epicyclic motions driven by MRI turbulence give rise to narrow, distinct peaks in the temporal power spectrum. Inertial waves, on the other hand, do not give rise to distinct peaks which rise significantly above the continuum noise spectrum set by MRI turbulence, even when the fluid motions are projected onto the eigenfunctions of the modes. This is a serious problem for QPO models based on inertial waves.
机译:吸积中子星和黑洞双星的X射线光曲线中的准周期振荡(QPO)已被广泛解释为是由于吸积盘中的驻波模式引起的。由于磁旋转不稳定性(MRI),这些圆盘被认为是高度湍流的。我们在剪切盒几何形状中研究MRI湍流引起的波激发。我们证明,由MRI湍流驱动的轴对称声模和径向周转运动会在时域功率谱中产生狭窄,不同的峰值。另一方面,即使将流体运动投影到模态的本征函数上,惯性波也不会产生明显的峰,该峰明显高于由MRI湍流设定的连续谱噪声谱。对于基于惯性波的QPO模型,这是一个严重的问题。

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