首页> 外文期刊>The Astrophysical journal >EVIDENCE FOR GRANULATION AND OSCILLATIONS IN PROCYON FROM PHOTOMETRY WITH THE WIRE SATELLITE
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EVIDENCE FOR GRANULATION AND OSCILLATIONS IN PROCYON FROM PHOTOMETRY WITH THE WIRE SATELLITE

机译:线束光度法测光子过程中的颗粒形成和振荡迹象

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摘要

We report evidence for the granulation signal in the star Procyon A, based on two photometric time series from the star tracker on the WIRE satellite. The power spectra show evidence of excess power around 1 mHz, consistent with the detection of p-modes reported from radial velocity measurements. We see a significant increase in the noise level below 3 mHz, which we interpret as the granulation signal. We have made a large set of numerical simulations to constrain the amplitude and timescale of the granulation signal and the amplitude of the oscillations. We find that the timescale for granulation is Γ_(gran) = 750 ± 200 s, the granulation amplitude is 1.8 ± 0.3 times solar, and the amplitude of the p-modes is 8.5 ± 2 ppm. We found the distribution of peak heights in the observed power spectra to be consistent with that expected from p-mode oscillations. However, the quality of the data is not sufficient to measure the large separation or to detect a comblike structure, as seen in the p-modes of the Sun. Comparison with the recent negative result from the MOST satellite reveals that the MOST data must have an additional noise source that prevented the detection of oscillations.
机译:我们基于来自WIRE卫星恒星跟踪仪的两个光度时间序列,报告了Procyon A恒星中颗粒信号的证据。功率谱显示了1 mHz附近多余功率的证据,这与从径向速度测量报告的p模式检测一致。我们看到低于3 mHz的噪声水平显着增加,我们将其解释为颗粒化信号。我们进行了大量的数值模拟,以限制颗粒化信号的幅度和时间尺度以及振荡的幅度。我们发现造粒的时间尺度是Γ_(gran)= 750±200 s,造粒幅度是太阳的1.8±0.3倍,p模式的幅度是8.5±2 ppm。我们发现观察到的功率谱中的峰高分布与p模式振荡预期的一致。但是,数据的质量不足以测量较大的间隔或检测梳状结构,如太阳的p模式所示。与MOST卫星最近的否定结果进行比较后发现,MOST数据必须具有一个额外的噪声源,以防止检测到振荡。

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