论文标题

在Sitian时代检测和监测热木星的潮汐耗散

Detecting and Monitoring Tidal Dissipation of Hot Jupiters in the Era of SiTian

论文作者

Yang, Fan, Wang, Wei, Wei, Xing, Zhang, Hui, Zhou, Ji-Lin, Shan, Su-Su, Zheng, Jie, Zong, Wei-Kai, Yang, Ming, Bai, Yu, Wang, Song, Zheng, Jia-Chen, Xu, Yu-Ru, Li, Yu-Feng, Lu, You-Jun, Liu, Ji-Feng

论文摘要

热木星的过时定时变化(TTV)提供了行星潮汐耗散的直接观察证据。通过TTV检测潮汐耗散需要高精度的传输时间和较长的时机基线。在这项工作中,我们预测并讨论了Sitian调查在检测和分析系外行星TTV时的潜在科学贡献。我们开发了用于Sitian调查的潮汐耗散检测管道,该调查旨在使用72 1米光望远镜的时间域天文学。该管道包括光曲线去融合的模块,获得的传输时间和TTV建模。 Sitian能够检测到25,000多个系外行星,其中我们预计$ \ sim $ 50的来源显示出潮汐消散的证据。我们基于XO-3B和WASP-161b的模拟Sitian光曲线,对潮汐消散目标进行检测和分析。 Transit Light曲线建模可为模拟光曲线的输入值提供1 $σ$之内的一致结果。同样,蒙特卡洛马尔可夫链预测的参数不确定性与通过模拟和建模光曲线1000倍获得的分布一致。一次性访问时,Sitian观察的时机精度为$ \ sim $ 0.5分钟。我们表明,考虑到时序精度和基线,TTV起源之间的差异,例如潮汐耗散,Apsidal进动,多个行星将是显着的。潮汐消散的热木星的检测率将回答一个至关重要的问题,即行星是在早期形成阶段迁移还是由于扰动引起的随机阶段,例如行星散射,世俗的相互作用。鉴于样品将扩大十倍,锡安人确定的目标将是建设性的。

Transit Timing Variation (TTV) of hot Jupiters provides direct observational evidence of planet tidal dissipation. Detecting tidal dissipation through TTV needs high precision transit timings and long timing baselines. In this work, we predict and discuss the potential scientific contribution of SiTian Survey in detecting and analyzing exoplanet TTV. We develop a tidal dissipation detection pipeline for SiTian Survey that aims at time-domain astronomy with 72 1-meter optical telescopes. The pipeline includes the modules of light curve deblending, transit timing obtaining, and TTV modeling. SiTian is capable to detect more than 25,000 exoplanets among which we expect $\sim$50 sources showing evidence of tidal dissipation. We present detection and analysis of tidal dissipating targets, based on simulated SiTian light curves of XO-3b and WASP-161b. The transit light curve modeling gives consistent results within 1$σ$ to input values of simulated light curves. Also, the parameter uncertainties predicted by Monte-Carlo Markov Chain are consistent with the distribution obtained from simulating and modeling the light curve 1000 times. The timing precision of SiTian observations is $\sim$ 0.5 minutes with one transit visit. We show that differences between TTV origins, e.g., tidal dissipation, apsidal precession, multiple planets, would be significant, considering the timing precision and baseline. The detection rate of tidal dissipating hot Jupiters would answer a crucial question of whether the planet migrates at an early formation stage or random stages due to perturbations, e.g., planet scattering, secular interaction. SiTian identified targets would be constructive given that the sample would extend tenfold.

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