论文标题

Keck/Nirspec在两个夸大的热气巨头K矮人的大气中进行了研究:WASP-52B和WASP-177B

Keck/NIRSPEC studies of He I in the atmospheres of two inflated hot gas giants orbiting K dwarfs: WASP-52b and WASP-177b

论文作者

Kirk, James, Santos, Leonardo A. Dos, López-Morales, Mercedes, Alam, Munazza K., Oklopčić, Antonija, MacLeod, Morgan, Zeng, Li, Zhou, George

论文摘要

我们使用在凯克II望远镜上使用NIRSPEC仪器获取的高分辨率观测值,介绍了WASP-52B大气中的中性氦气在10833a的中性氦气以及在放牧黄蜂177B大气中的暂定证据。我们在WASP-52B的大气中检测到氦气的多余吸收,$ 3.44 \ pm 0.31 $%($11σ$),或等效于$ 66 \ pm 5 $ 5 $大气规模的高度。这种吸收以行星的休息框架为中心($ΔV= 0.00 \ pm 1.19 $ km s $^{ - 1} $)。我们使用1D Parker Wind模型对行星的逃生进行建模,并计算其质量损失率为$ \ sim 1.4 \ times 10^{11} $ g s $^{ - 1} $,或等效地占其每回合质量的0.5%。对于WASP-177B,我们看到红移的证据($ΔV= 6.02 +/- 1.88 $ km s $^{ - 1} $)氦气的吸收$ 1.28 \ pm 0.29 $ 0.29 $%(等于$ 23 \ $ 23 \ pm 5 $ 5 $大气规模高度)。但是,由于相似振幅的传输光谱中的残留系统学,我们没有将其解释为在地球大气中吸收的重要证据。使用1D Parker Wind模型,我们将WASP-177B的逃生率$ 7.9 \ times 10^{10} $ g s $^{ - 1} $设置为$3σ$上限。我们的结果与最近的文献检测一起表明,XUV辐射之间的暂定关系和我的吸收幅度可能比以前建议的要浅。我们的结果强调了亚稳态的氦气如何提高我们对大气损失及其在塑造外球星人群中的作用的理解。

We present the detection of neutral helium at 10833A in the atmosphere of WASP-52b and tentative evidence of helium in the atmosphere of the grazing WASP-177b, using high-resolution observations acquired with the NIRSPEC instrument on the Keck II telescope. We detect excess absorption by helium in WASP-52b's atmosphere of $3.44 \pm 0.31$% ($11σ$), or equivalently $66 \pm 5$ atmospheric scale heights. This absorption is centered on the planet's rest frame ($Δv = 0.00 \pm 1.19$km s$^{-1}$). We model the planet's escape using a 1D Parker wind model and calculate its mass-loss rate to be $\sim 1.4 \times 10^{11}$g s$^{-1}$, or equivalently 0.5% of its mass per Gyr. For WASP-177b, we see evidence for red-shifted ($Δv = 6.02 +/- 1.88$km s$^{-1}$) helium-like absorption of $1.28 \pm 0.29$% (equal to $23 \pm 5$ atmospheric scale heights). However, due to residual systematics in the transmission spectrum of similar amplitude, we do not interpret this as significant evidence for He absorption in the planet's atmosphere. Using a 1D Parker wind model, we set a $3σ$ upper limit on WASP-177b's escape rate of $7.9 \times 10^{10}$ g s$^{-1}$. Our results, taken together with recent literature detections, suggest the tentative relation between XUV irradiation and He I absorption amplitude may be shallower than previously suggested. Our results highlight how metastable helium can advance our understanding of atmospheric loss and its role in shaping the exoplanet population.

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