论文标题

恒星对流噪声的3D磁力流动力学模拟,以改善系外行星的检测。 I.定期采样径向速度观察的情况

3D magneto-hydrodynamical simulations of stellar convective noise for improved exoplanet detection. I. Case of regularly sampled radial velocity observations

论文作者

Sulis, S., Mary, D., Bigot, L.

论文摘要

恒星表面的对流运动在径向速度(RV)数据中产生随机有色噪声源。这种噪音阻碍了小型系外行星的检测。此外,与此噪声相关的未知统计数据(幅度,分布)使得很难估算外部球星检测测试的错误警报概率(FAP)。在本文中,我们研究了使用恒星对流的3D磁磁动力学模拟(MHD)来设计检测方法,该方法可以提供对FAP的可靠估计和高检测能力的可靠估计。我们通过将高尔夫仪器在SOHO航天器上观察到的磁盘集成速度进行比较,测试了3D模拟在生产太阳能RV中的现实主义。我们根据这些模拟时间序列标准化的周期图提出了一种新的检测方法,并将多个检测测试应用于这些标准的期刊。 3D合成对流噪声的功率谱密度与短期内太阳能RV观测一致。对于定期采样的观察,用于用于通过3D模拟噪声标准化的周期图的几个统计测试的FAP的分析表达式是准确的。在这项工作中考虑的自适应测试(高批评,伯克·琼斯)在系外行星领域是新的,它可能比具有偏心轨道的多个星际系统和行星的经典测试(基于最高的期刊系统和行星)提供了更好的检测性能(基于最高期间图值)。现在,3D MHD模拟已经足够成熟,可以产生影响RV数据的对流噪声的可靠合成时间序列。这些系列可用于访问此噪声的统计数据,并得出准确的测试FAP,这是检测到CM/S水平的系外行星中的关键元素。

Convective motions at the stellar surface generate a stochastic colored noise source in the radial velocity (RV) data. This noise impedes the detection of small exoplanets. Moreover, the unknown statistics (amplitude, distribution) related to this noise make it difficult to estimate the false alarm probability (FAP) for exoplanet detection tests. In this paper, we investigate the possibility of using 3D magneto-hydrodynamical simulations (MHD) of stellar convection to design detection methods that can provide both a reliable estimate of the FAP and a high detection power. We tested the realism of 3D simulations in producing solar RV by comparing them with the observed disk integrated velocities taken by the GOLF instrument on board the SOHO spacecraft. We presented a new detection method based on periodograms standardized by these simulated time series, applying several detection tests to these standarized periodograms. The power spectral density of the 3D synthetic convective noise is consistent with solar RV observations for short periods. For regularly sampled observations, the analytic expressions of FAP derived for several statistical tests applied to the periodogram standardized by 3D simulation noise are accurate. The adaptive tests considered in this work (Higher-Criticism, Berk-Jones), which are new in the exoplanet field, may offer better detection performance than classical tests (based on the highest periodogram value) in the case of multi-planetary systems and planets with eccentric orbits. 3D MHD simulations are now mature enough to produce reliable synthetic time series of the convective noise affecting RV data. These series can be used to access to the statistics of this noise and derive accurate FAP of tests that are a critical element in the detection of exoplanets down to the cm/s level.

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