论文标题

LTT 1445 AB是Hycean World还是一个冷哈伯世界?探索闪烁的潜力公开其性质

Is LTT 1445 Ab a Hycean World or a cold Haber World? Exploring the Potential of Twinkle to Unveil Its Nature

论文作者

Phillips, Caprice, Wang, Ji, Edwards, Billy, Martinez, Romy Rodriguez, Asnodkar, Anusha Pai, Gaudi, B. Scott

论文摘要

我们探索了Twinkle的前景,以确定附近类似地面的行星LTT 1445 AB的大气组成,包括检测潜在的生物签名氨的可能性(NH $ _ {3} $)。在6.9 PC的距离时,该系统是第二个已知的过渡系统,将通过传输光谱观察到即将到来的闪烁任务。 Twinkle配备了0.45 m的望远镜,覆盖光谱波长范围为0.5-4.5 $ $ $ m,并在50-70之间进行分辨能力,并旨在研究系外行星,明亮的恒星和太阳系对象。我们研究了任务研究LTT 1445 AB的潜力,并发现Twinkle数据可以区分Cold Haber World(N $ _2 $ -H $ _2 $ _2 $ dominated Altiveeres)和Hycean World具有H $ _2 $ _2 $ O-H $ _2 $ _2 $ dominationeres,并具有$χ_ν^{2} $ c {2} $ = 3.01。内部组成分析有利于LTT 1445 AB的Haber世界情景,这表明该星球可能缺乏大量的水层。我们使用petitradtrans和闪烁的模拟器来模拟传输光谱,以使寒冷的哈伯世界更有可能的情况,而nh $ _ {3} $被认为是生物签名。我们研究不同情况下的可检测性:不同的氢部分,氨的浓度和云覆盖率。我们发现,可以在$ \ sim $ 3 $σ$中以25个过渡和4.0 ppm的NH $ _ {3} $的体积混合量为4.0 ppm。我们提供了检索分析的示例,以限制潜在的NH $ _ {3} $和H $ _ {2} $ O在大气中。我们的研究说明了闪烁的潜力,表征了潜在的可居住系外行星的大气。

We explore the prospects for Twinkle to determine the atmospheric composition of the nearby terrestrial-like planet LTT 1445 Ab, including the possibility of detecting the potential biosignature ammonia (NH$_{3}$). At a distance of 6.9 pc, this system is the second closest known transiting system and will be observed through transmission spectroscopy with the upcoming Twinkle mission. Twinkle is equipped with a 0.45 m telescope, covers a spectral wavelength range of 0.5 - 4.5 $μ$m simultaneously with a resolving power between 50 - 70, and is designed to study exoplanets, bright stars, and solar system objects. We investigate the mission's potential to study LTT 1445 Ab and find that Twinkle data can distinguish between a cold Haber World (N$_2$-H$_2$-dominated atmosphere) and a Hycean World with a H$_2$O-H$_2$-dominated atmosphere, with a $χ_ν^{2}$ = 3.01. Interior composition analysis favors a Haber World scenario for LTT 1445 Ab, which suggests that the planet probably lacks a substantial water layer. We use petitRADTRANS and a Twinkle simulator to simulate transmission spectra for the more likely scenario of a cold Haber World for which NH$_{3}$ is considered to be a biosignature. We study the detectability under different scenarios: varying hydrogen fraction, concentration of ammonia, and cloud coverage. We find that ammonia can be detected at a $\sim$ 3$σ$ level for optimal (non-cloudy) conditions with 25 transits and a volume mixing ration of 4.0 ppm of NH$_{3}$. We provide examples of retrieval analysis to constrain potential NH$_{3}$ and H$_{2}$O in the atmosphere. Our study illustrates the potential of Twinkle to characterize atmospheres of potentially habitable exoplanets.

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