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Tuning in on Cepheids: Radial velocity amplitude modulations - A source of systematic uncertainty for Baade-Wesselink distances

机译:调整造父变星:径向速度幅度调制-Baade-Wesselink距离的系统不确定性来源

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Context. Classical Cepheids are crucial calibrators of the extragalactic distance scale. The Baade-Wesselink technique can be used to calibrate Cepheid distances using Cepheids in the Galaxy and the Magellanic Clouds. Aims. I report the discovery of modulations in radial velocity (RV) curves of four Galactic classical Cepheids and investigate their impact as a systematic uncertainty for Baade-Wesselink distances. Methods. Highly precise Doppler measurements were obtained using the Coralie high-resolution spectrograph since 2011. Particular care was taken to sample all phase points in order to very accurately trace the RV curve during multiple epochs and to search for differences in linear radius variations derived from observations obtained at different epochs. Different timescales are sampled, ranging from cycle-to-cycle to months and years. Results. The unprecedented combination of excellent phase coverage obtained during multiple epochs and high precision enabled the discovery of significant modulation in the RV curves of the short-period s-Cepheids QZ?Normae and V335?Puppis, as well as the long-period fundamental mode Cepheids ??Carinae and RS?Puppis. The modulations manifest as shape and amplitude variations that vary smoothly on timescales of years for short-period Cepheids and from one pulsation cycle to the next in the long-period Cepheids. The order of magnitude of the effect ranges from several hundred m?s-1 to a few km?s-1. The resulting difference among linear radius variations derived using data from different epochs can lead to systematic errors of up to 15% for Baade-Wesselink-type distances, if the employed angular and linear radius variations are not determined contemporaneously. Conclusions. The different natures of the Cepheids exhibiting modulation in their RV curves suggests that this phenomenon is common. The observational baseline is not yet sufficient to conclude whether these modulations are periodic. To ensure the accuracy of Baade-Wesselink distances, angular and linear radius variations should always be determined contemporaneously.
机译:上下文。经典造父变星是银河外距离尺度的关键校准器。 Baade-Wesselink技术可用于使用银河系和麦哲伦星系中的造父变星来校准造父变星距离。目的我报告了四个银河系经典造父变星的径向速度(RV)曲线调制的发现,并研究了它们对Baade-Wesselink距离的系统不确定性的影响。方法。自2011年以来,使用Coralie高分辨率光谱仪获得了高精度的多普勒测量结果。特别注意对所有相点进行采样,以非常精确地追踪多个时期的RV曲线,并搜索从获得的观测值得出的线性半径变化的差异在不同的时代。采样的时间范围从一个周期到一个月甚至几年不等。结果。在多个时期中获得的出色的相位覆盖范围和高精度的空前组合,使得在短周期s-造父变星QZ?Normae和V335?Puppis的RV曲线以及长周期的基本模造父变星的RV曲线中发现了显着的调制Carinae和RS?Puppis。调制表现为形状和振幅变化,这些变化对于短周期造父变星在几年的时间尺度上是平稳的,并且在长周期造父变星中是从一个脉动周期到下一个脉动周期。影响的数量级从几百个m?s-1到几公里?s-1。如果未同时确定所采用的角度和线性半径变化,则使用不同时期的数据得出的线性半径变化之间的差异可能导致Baade-Wesselink类型距离的系统误差高达15%。结论。造父变星在其RV曲线中表现出调制的不同性质表明,这种现象很普遍。观测基线还不足以得出这些调制是否为周期性的结论。为确保Baade-Wesselink距离的准确性,应始终同时确定角度和线性半径的变化。

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