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首页> 外文期刊>The Astrophysical journal >Photometry of Proxima Centauri and Barnard's Star Using Hubble Space Telescope Fine Guidance Sensor 3: A Search for Periodic Variations*
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Photometry of Proxima Centauri and Barnard's Star Using Hubble Space Telescope Fine Guidance Sensor 3: A Search for Periodic Variations*

机译:哈勃太空望远镜精细制导传感器3对半人马座Proxima Centauri和巴纳德星的光度法3:寻找周期性变化*

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摘要

We have observed Proxima Centauri and Barnard's star with the Hubble Space Telescope Fine Guidance Sensor 3. Proxima Cen exhibits small-amplitude, periodic photometric variations. Once several sources of systematic photometric error are corrected, we obtain 2 mmag internal photometric precision. We identify two distinct behavior modes over the past 4 years: higher amplitude, longer period and smaller amplitude, shorter period. Within the errors, one period (P ~ 83 days) is twice the other. Barnard's star shows very weak evidence for periodicity on a timescale of approximately 130 days. If we interpret these periodic phenomena as rotational modulation of starspots, we identify three discrete spots on Proxima Cen and possibly one spot on Barnard's star. We find that the disturbances change significantly on timescales as short as one rotation period.
机译:我们已经用哈勃太空望远镜精细制导传感器3观测到Proxima Centauri和Barnard的恒星。ProximaCen表现出小振幅,周期性的光度变化。一旦纠正了系统测光误差的几种来源,我们将获得2 mmag的内部测光精度。在过去的4年中,我们确定了两种不同的行为模式:幅度较大,周期较长,幅度较小,周期较短。在误差范围内,一个周期(P〜83天)是另一个周期的两倍。巴纳德的恒星在约130天的时间尺度上显示出非常弱的周期性证据。如果我们将这些周期性现象解释为星点的旋转调制,则会在Proxima Cen上识别出三个离散点,并可能在Barnard的恒星上识别出一个点。我们发现扰动在短至一个旋转周期的时间尺度上会发生显着变化。

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