Transit Timing Variations (TTVs) can provide useful information for systems observed by transit, by putting constraints on the masses and eccentricities of the observed planets, or even constrain the existence of non-transiting companions. However, TTVs can also prevent the detection of small planets in transit surveys, or bias the recovered planetary and transit parameters. Here we show that Kepler-1972 c, initially the "not transit-like" false positive KOI-3184.02, is an Earth-sized planet whose orbit is perturbed by Kepler-1972 b (initially KOI-3184.01). The pair is locked in a 3:2 Mean-motion resonance, each planet displaying TTVs of more than 6h hours of amplitude over the duration of the Kepler mission. The two planets have similar masses $m_b/m_c =0.956_{-0.051}^{+0.056}$ and radii $R_b=0.802_{-0.041}^{+0.042}R_{Earth}$, $R_c=0.868_{-0.050}^{+0.051}R_{Earth}$, and the whole system, including the inner candidate KOI-3184.03, appear to be coplanar. Despite the faintness of the signals (SNR of 1.35 for each transit of Kepler-1972 b and 1.10 for Kepler-1972 c), we recovered the transits of the planets using the RIVERS method, based on the recognition of the tracks of planets in river diagrams using machine learning, and a photo-dynamic fit of the lightcurve. Recovering the correct ephemerides of the planets is essential to have a complete picture of the observed planetary systems. In particular, we show that in Kepler-1972, not taking into account planet-planet interactions yields an error of $\sim 30\%$ on the radii of planets b and c, in addition to generating in-transit scatter, which leads to mistake KOI3184.02 for a false positive. Alleviating this bias is essential for an unbiased view of Kepler systems, some of the TESS stars, and the upcoming PLATO mission.
翻译:中转时间变换( TTV) 可以为中转观察的系统提供有用的信息, 包括限制观测到的行星的质量和偏心, 甚至限制非传输伴侣的存在。 但是, TTV 也可以防止在中转勘查中探测小行星, 或者偏向回收的行星和中转参数。 这里我们显示 Kepler-1972 c, 最初“ 与过境不同” 假的 KOI-3184.02, 是一个地球大小的行星, 轨道被开普勒- 1972 b( 初始的 KOI-3184.01) 渗透。 配对的地球轨道锁定在3: 2 平调振动中, 每个在开普勒任务期间显示超过6小时的振荡。 两个行星的波状是 $@ b/ m_c=0. 956- 0.01} 0.056} 美元和 radi 美元( 美元=0. 802 ⁇ - 0.042}地球表面的轨道, $R=0. 688美元, 流中显示整个地球的流流流流流流流流的直径, 和直径的电的直径 0.50.50.5O的流的电的直径 和直径的流的流的流 向。