论文标题
WASP-69B和WASP-52B的亚稳态氦气的约束,具有超鼻涕带光度法
Constraints on Metastable Helium in the Atmospheres of WASP-69b and WASP-52b with Ultra-Narrowband Photometry
论文作者
论文摘要
亚稳态2 $^3 $ s氦吸收的红外观察迅速成熟,因为该物种是外部球星大气的独特探针。具体而言,可以使用三重态特征(在1083.3 nm附近的真空波长)中的过境深度来限制系外行星上层大气的温度和质量损失率。在这里,我们提出了一种新的光度法技术,用于测量2 $^3 $ s氦的吸收,使用超鼻翼的滤波器(以0.635 nm的半极度为单位)与在200英寸Hale Hale TeleScope上安装在宽场红外摄像头(WIRC)中,并安装在宽场红外摄像头(WIRC)中。我们使用Telluric OH线条和氦弧灯来表征通过过滤器折射效应,并确认我们对滤波器传输曲线的理解。我们通过观察WASP-69B的过境并检测到$ 0.498 \ pm0.045 $%(11.1 $σ$)的多余吸收来对我们的新技术进行基准测试,这与以前的测量结果一致。然后,我们使用这种方法研究膨胀的气体巨型黄蜂52B,并在我们的氦带通道中对多余的吸收量排名第95%的上限为0.47%。使用大气逃生模型,我们将WASP-69B的质量损耗限制为$ 5.25^{+0.65} _ { - 0.46} \ times10^{ - 4} 〜M_ \ Mathrm {J}/\ Mathrm {J}/\ Mathrm ($ 3.32^{+0.67} _ { - 0.56} \ times10^{ - 3} 〜m_ \ mathrm {j}/\ mathrm {gyr} $)在7,000 k(12,000 k)。此外,我们在这些温度为$ 2.1 \ times10^{ - 4} 〜M_ \ Mathrm {J}/\ Mathrm {gyrm {gyrm {$ 2.1 \ times10^{-3} 〜m_ \ mathrm {这些结果表明,超扣带光度法可以可靠地量化亚稳态氦特征的吸收。
Infrared observations of metastable 2$^3$S helium absorption with ground- and space-based spectroscopy are rapidly maturing, as this species is a unique probe of exoplanet atmospheres. Specifically, the transit depth in the triplet feature (with vacuum wavelengths near 1083.3 nm) can be used to constrain the temperature and mass loss rate of an exoplanet's upper atmosphere. Here, we present a new photometric technique to measure metastable 2$^3$S helium absorption using an ultra-narrowband filter (full-width at half-maximum of 0.635 nm) coupled to a beam-shaping diffuser installed in the Wide-field Infrared Camera (WIRC) on the 200-inch Hale Telescope at Palomar Observatory. We use telluric OH lines and a helium arc lamp to characterize refractive effects through the filter and to confirm our understanding of the filter transmission profile. We benchmark our new technique by observing a transit of WASP-69b and detect an excess absorption of $0.498\pm0.045$% (11.1$σ$), consistent with previous measurements after considering our bandpass. Then, we use this method to study the inflated gas giant WASP-52b and place a 95th-percentile upper limit on excess absorption in our helium bandpass of 0.47%. Using an atmospheric escape model, we constrain the mass loss rate for WASP-69b to be $5.25^{+0.65}_{-0.46}\times10^{-4}~M_\mathrm{J}/\mathrm{Gyr}$ ($3.32^{+0.67}_{-0.56}\times10^{-3}~M_\mathrm{J}/\mathrm{Gyr}$) at 7,000 K (12,000 K). Additionally, we set an upper limit on the mass loss rate of WASP-52b at these temperatures of $2.1\times10^{-4}~M_\mathrm{J}/\mathrm{Gyr}$ ($2.1\times10^{-3}~M_\mathrm{J}/\mathrm{Gyr}$). These results show that ultra-narrowband photometry can reliably quantify absorption in the metastable helium feature.