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A Pair of TESS Planets Spanning the Radius Valley around the Nearby Mid-M Dwarf LTT 3780

机译:一对苔丝行星遍布附近的半矮星LTT 3780周围的半径谷

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We present the confirmation of two new planets transiting the nearby mid-M dwarf LTT 3780 (TIC 36724087, TOI-732, V = 13.07, Ks = 8.204, Rs = 0.374 R⊙, Ms = 0.401 M⊙, d = 22 pc). The two planet candidates are identified in a single Transiting Exoplanet Survey Satellite sector and validated with reconnaissance spectroscopy, ground-based photometric follow-up, and high-resolution imaging. With measured orbital periods of Pb = 0.77, Pc = 12.25 days and sizes rp,b = 1.33 ± 0.07, rp,c = 2.30 ± 0.16 R⊕, the two planets span the radius valley in period–radius space around low-mass stars, thus making the system a laboratory to test competing theories of the emergence of the radius valley in that stellar mass regime. By combining 63 precise radial velocity measurements from the High Accuracy Radial velocity Planet Searcher (HARPS) and HARPS-N, we measure planet masses of ${m}_{p,b}={2.62}_{-0.46}^{+0.48}$ and ${m}_{p,c}={8.6}_{-1.3}^{+1.6}$ M⊕, which indicates that LTT 3780b has a bulk composition consistent with being Earth-like, while LTT 3780c likely hosts an extended H/He envelope. We show that the recovered planetary masses are consistent with predictions from both photoevaporation and core-powered mass-loss models. The brightness and small size of LTT 3780, along with the measured planetary parameters, render LTT 3780b and c as accessible targets for atmospheric characterization of planets within the same planetary system and spanning the radius valley.
机译:我们提出了两个新的行星的确认过渡附近的中间-M矮LTT 3780(TIC 36724087,TOI-732,V = 13.07,KS = 8.204,为Rs = 0.374R⊙,MS = 0.401M⊙,d = 22,PC) 。这两个行星的候选人都在一个太阳系外行星行运卫星调查部门识别和侦察光谱,地面光度跟进,以及高分辨率成像验证。用PB = 0.77,PC =12.25天的测量轨道周期和大小RP,B = 1.33±0.07,RP中,c = 2.30±0.16R⊕,两个行星跨越期间半径空间的半径谷周围低质量恒星,这样就使得系统实验室,以测试该恒星质量体系半径谷的出现竞争的理论。通过从高精度径向速度行星搜索器(竖琴)和竖琴-N结合63点精确的径向速度的测量,我们测量的$ {米}行星群众_ {P,B} = {2.62} _ { - 0.46} ^ {+ 0.48} $和$ {米} _ {p,C} = {8.6} _ { - 1.3} ^ {+ 1.6} $M⊕,这表明LTT 3780b具有作为地球状一致的主体组成,而LTT 3780c可能主机扩展H /他的信封。我们发现,回收的行星群众与来自光致蒸发和核心供电质量损失模型的预测是一致的。亮度和LTT 3780的尺寸小,与实测行星参数一起,渲染LTT 3780b和C作为同一行星系统内的行星大气表征和跨越半径山谷可访问的目标。

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