论文标题
Hot Neptune LTT 9779B的相曲线表明高金属气氛
Phase Curves of Hot Neptune LTT 9779b Suggest a High-Metallicity Atmosphere
论文作者
论文摘要
相位曲线测量可提供外部大气组成,热结构和动力学的全球视图。尽管迄今为止进行的数十个相曲线测量中的大多数都是大型的热木星,但人们对探测较小的行星的大气是行星形成的最典型最终产物的兴趣。这样一个星球是超热的海王星LTT 9779b,这是海王星沙漠的罕见居民。同伴论文介绍了地球的次要蚀和日间热发射光谱;在这项工作中,我们描述了行星的光学和红外相曲线,该曲线的特征是使用Spitzer和Tess光度法。我们在4.5UM处检测LTT 9779b的热相变化,发现相位幅度为358 +/- 106 ppm,峰值发射的经度为-10 deg +/- 21 deg of the the the the the the the the the the the the the the the the the the the spoint point。结合我们的次要日食观察,这些相曲线测量意味着4.5UM日间亮度温度为1800 +/- 120 K,夜间亮度温度为700 +/- 430 K(<1350 K <1350 k,在2个Sigma置信度<1350 K),以及与1110 +/- 460 K的日夜亮度对比。木星经历了类似水平的恒星照射。尽管不是结论性的,但我们对其小的4.5UM相位偏移,相位变化的幅度相对较大,以及目标的日间发射光谱与类似温度的热木星之间的定性差异,所有这些都表明LTT 9779B的超阳光大气金属性可能给予LTT 9779B,因为它的尺寸和质量可能预期。最后,我们提供了精制的滨海(p = 0.79207022 +/- 0.00000069 d,t0 = 2458783.51636 +/- 0.00027,bjd_tdb)以有效地安排未来的观测,以进一步表征这个吸引人的星球氛围。 (抽象删节)
Phase curve measurements provide a global view of the composition, thermal structure, and dynamics of exoplanet atmospheres. Although most of the dozens of phase curve measurements made to date are of large, massive hot Jupiters, there is considerable interest in probing the atmospheres of the smaller planets that are the more typical end product of planet formation. One such planet is the ultra-hot Neptune LTT 9779b, a rare denizen of the Neptune desert. A companion paper presents the planet's secondary eclipses and day-side thermal emission spectrum; in this work we describe the planet's optical and infrared phase curves, characterized using Spitzer and TESS photometry. We detect LTT 9779b's thermal phase variations at 4.5um, finding a phase amplitude of 358+/-106 ppm and a longitude of peak emission -10 deg +/- 21 deg east of the substellar point. Combined with our secondary eclipse observations, these phase curve measurements imply a 4.5um day-side brightness temperature of 1800+/-120 K, a night-side brightness temperature of 700+/-430 K (<1350 K at 2 sigma confidence), and a day-night brightness temperature contrast of 1110+/-460 K. We compare our data to the predictions of 3D GCMs and to similar observations of hot Jupiters experiencing similar levels of stellar irradiation. Though not conclusive, our measurement of its small 4.5um phase offset, the relatively large amplitude of the phase variation, and the qualitative differences between our target's day-side emission spectrum and those of hot Jupiters of similar temperatures all suggest a super-Solar atmospheric metallicity for LTT 9779b, as might be expected given its size and mass. Finally, we provide a refined ephemeris (P=0.79207022+/-0.00000069 d, T0=2458783.51636+/-0.00027, BJD_TDB) to enable efficient scheduling of future observations to further characterize the atmosphere of this intriguing planet. (abstract abridged)