高光谱分辨率外行星大气中金属氢化物的exogem探测

L. Flagg, J. Turner, E. Deibert, A. Ridden-Harper, E. D. de Mooij, R. MacDonald, R. Jayawardhana, N. Gibson, Adam B Langeveld, D. Sing
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引用次数: 0

摘要

系外行星大气的研究通常通过与棕矮星类似物的协同作用而丰富。然而,在褐矮星中常见的许多关键分子尚未在系外行星大气中得到证实。一个重要的例子是氢化铬(CrH),它经常被用来探测大气温度,并将褐矮星分为光谱类型。最近,在热木星WASP-31b的低分辨率透射光谱中报道了CrH的初步证据。在这里,我们展示了grace /Gemini North和UVES/甚大望远镜对WASP-31b透射光谱的高光谱分辨率观测。我们以5.6σ的置信度探测到CrH,这是首次在高光谱分辨率的系外行星大气中探测到金属氢化物。我们的发现是理解金属氢化物在系外行星大气中的作用的关键一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ExoGemS Detection of a Metal Hydride in an Exoplanet Atmosphere at High Spectral Resolution
Exoplanet atmosphere studies are often enriched by synergies with brown dwarf analogs. However, many key molecules commonly seen in brown dwarfs have yet to be confirmed in exoplanet atmospheres. An important example is chromium hydride (CrH), which is often used to probe atmospheric temperatures and classify brown dwarfs into spectral types. Recently, tentative evidence for CrH was reported in the low-resolution transmission spectrum of the hot Jupiter WASP-31b. Here, we present high spectral resolution observations of WASP-31b’s transmission spectrum from GRACES/Gemini North and UVES/Very Large Telescope. We detect CrH at 5.6σ confidence, representing the first metal hydride detection in an exoplanet atmosphere at high spectral resolution. Our findings constitute a critical step in understanding the role of metal hydrides in exoplanet atmospheres.
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