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首页> 外文期刊>The Astrophysical journal >PERIOD ERROR ESTIMATION FOR THE KEPLER ECLIPSING BINARY CATALOG
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PERIOD ERROR ESTIMATION FOR THE KEPLER ECLIPSING BINARY CATALOG

机译:开普勒忽略二进制目录的周期性错误估计

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The Kepler Eclipsing Binary Catalog (KEBC) describes 2165 eclipsing binaries identified in the 115?deg2 Kepler Field based on observations from Kepler quarters Q0, Q1, and Q2. The periods in the KEBC are given in units of days out to six decimal places but no period errors are provided. We present the PEC (Period Error Calculator) algorithm, which can be used to estimate the period errors of strictly periodic variables observed by the Kepler Mission. The PEC algorithm is based on propagation of error theory and assumes that observation of every light curve peak/minimum in a long time-series observation can be unambiguously identified. The PEC algorithm can be efficiently programmed using just a few lines of C computer language code. The PEC algorithm was used to develop a simple model that provides period error estimates for eclipsing binaries in the KEBC with periods less than 62.5?days: log σ P ≈ – 5.8908 + 1.4425(1 + log P), where P is the period of an eclipsing binary in the KEBC in units of days. KEBC systems with periods ≥62.5?days have KEBC period errors of ~0.0144?days. Periods and period errors of seven eclipsing binary systems in the KEBC were measured using the NASA Exoplanet Archive Periodogram Service and compared to period errors estimated using the PEC algorithm.
机译:开普勒渐进二进制目录(KEBC)描述了基于开普勒四分之一Q0,Q1和Q2的观测值在115°2开普勒场中识别出的2165个日食二值二进制。 KEBC中的期间以天为单位给出,直到小数点后六位,但未提供期间误差。我们提出了PEC(周期误差计算器)算法,该算法可用于估计开普勒任务观测到的严格周期变量的周期误差。 PEC算法基于误差传播理论,并假定可以明确识别长时间序列观察中每个光曲线峰值/最小值的观察。只需使用几行C计算机语言代码就可以有效地编程PEC算法。使用PEC算法开发了一个简单的模型,该模型提供了周期小于62.5?days的KEBC中日食二进制文件的周期误差估计:logσP≈– 5.8908 + 1.4425(1 + log P),其中P是周期KEBC中以日为单位的日蚀二进制文件。周期≥62.5天的KEBC系统的KEBC周期误差约为0.0144天。使用NASA系外行星存档周期图服务测量了KEBC中七个日食双星系统的周期和周期误差,并将其与使用PEC算法估算的周期误差进行了比较。

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