首页> 外文OA文献 >Discovery of kHz Fluctuations in Centaurus X-3: Evidence for Photon Bubble Oscillations (PBO) and Turbulence in a High Mass X-ray Binary Pulsar
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Discovery of kHz Fluctuations in Centaurus X-3: Evidence for Photon Bubble Oscillations (PBO) and Turbulence in a High Mass X-ray Binary Pulsar

机译:在Centaurus X-3中发现kHz波动:光子的证据   高质量X射线二元脉冲星中的气泡振荡(pBO)和湍流

摘要

We report the discovery of kHz fluctuations, including quasi-periodicoscillations (QPO) at ~330 Hz and ~760 Hz and a broadband kHz continuum in thepower density spectrum of the high mass X-ray binary pulsar Centaurus X-3.These observations of Cen X-3 were carried out with the Rossi X-ray TimingExplorer (RXTE). The fluctuation spectrum is flat from mHz to a few Hz, thensteepens to $f^{-2}$ behavior between a few Hz and ~100 Hz. Above a hundred Hz,the spectrum shows the QPO features, plus a flat continuum extending to ~1200Hz and then falling out to ~1800 Hz. These results, which required theco-adding three days of observations of Cen X-3, are at least as fast as thefastest known variations in X-ray emission from an accreting compact object(kHz QPO in LMXB sources) and probably faster since extension to ~1800 Hz isindicated by the most likely parameterization of the data. Multi-dimensional radiation hydrodynamics simulations of optically thickplasma flow onto the magnetic poles of an accreting neutron star show that thefluctuations at frequencies above 100 Hz are consistent with photon bubbleturbulence and oscillations (PBO) previously predicted to be observable in thissource. For a polar cap opening angle of 0.25 radians, we show that thespectral form above 100 Hz is reproduced by the simulations, including thefrequencies of the QPO and the relative power in the QPO and the kHz continuum.This has resulted in the first model-dependent measurement of the polar capsize of an X-ray pulsar.
机译:我们报告了kHz波动的发现,包括在高品质X射线双星脉冲星半人马座X-3的功率密度谱中的〜330 Hz和〜760 Hz处的准周期振荡(QPO)和宽带kHz连续谱。 X-3是使用Rossi X射线TimingExplorer(RXTE)进行的。波动频谱从mHz到几Hz是平坦的,然后在几Hz到〜100 Hz之间变陡为$ f ^ {-2} $行为。高于100 Hz时,该频谱显示了QPO的特征,外加一个平坦的连续谱,扩展到〜1200Hz,然后下降到〜1800 Hz。这些结果需要对Cen X-3进行三天的共同观测,至少与吸积的紧凑物体(LMXB光源中的kHz QPO)在X射线发射中已知的最快变化一样快,并且自扩展到数据的最可能参数化指示〜1800 Hz。光学厚度等离子流向正在积聚的中子星磁极的多维辐射流体动力学模拟表明,在高于100 Hz的频率处的涨落与先前预计在该源中可观察到的光子气泡湍流和振荡(PBO)一致。对于0.25弧度的极帽开口角,我们显示了100 Hz以上的频谱形式是通过仿真再现的,包括QPO的频率以及QPO和kHz连续谱中的相对功率,这导致了第一个与模型相关的测量X射线脉冲星的极倾角。

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