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A Large Ground-based Observing Campaign of the Disintegrating Planet K2-22b

机译:K2-22b分解星球的大型地面观测战役

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We present 45 ground-based photometric observations of the K2-22 system collected between 2016 December and 2017 May, which we use to investigate the evolution of the transit of the disintegrating planet K2-22b. Last observed in early 2015, in these new observations we recover the transit at multiple epochs and measure a typical depth of <1.5%. We find that the distribution of our measured transit depths is comparable to the range of depths measured in observations from 2014 and 2015. These new observations also support ongoing variability in the K2-22b transit shape and time, although the overall shallowness of the transit makes a detailed analysis of these transit parameters difficult. We find no strong evidence of wavelength-dependent transit depths for epochs where we have simultaneous coverage at multiple wavelengths, although our stacked Las Cumbres Observatory data collected over days-to-months timescales are suggestive of a deeper transit at blue wavelengths. We encourage continued high-precision photometric and spectroscopic monitoring of this system in order to further constrain the evolution timescale and to aid comparative studies with the other few known disintegrating planets.
机译:我们介绍了2016年12月至2017年5月之间收集的45颗K2-22系统的地面光度学观测值,我们将使用它们来观测崩解行星K2-22b的传播演变。上一次观测是在2015年初,在这些新观测结果中,我们恢复了多个时期的过境,测量的典型深度<1.5%。我们发现,我们测得的过境深度的分布与2014年和2015年观测中测得的深度范围相当。这些新的观测结果也支持了K2-22b过境形状和时间的持续变化,尽管整体过境浅度使得对这些过境参数进行详细分析比较困难。尽管我们在数月至数月的时间尺度上收集到的Las Cumbres天文台的堆叠数据表明在蓝色波长处有更深的传播,但我们没有发现强烈的证据表明这些波长在多个波长同时覆盖的时期与波长有关。我们鼓励继续对该系统进行高精度的光度和光谱监测,以进一步限制演化时间,并有助于与其他少数已知分解行星的比较研究。

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