Constraints on Metastable Helium in the Atmospheres of WASP-69b and WASP-52b with Ultra-Narrowband Photometry
arXiv:2004.13728 · doi:10.3847/1538-3881/ab8e34
Abstract
Infrared observations of metastable 2S 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 2S 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 % (11.1), 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 () 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 (). These results show that ultra-narrowband photometry can reliably quantify absorption in the metastable helium feature.
17 pages, 8 figures (figures 1 and 2 are rasterized for arXiv file size compliance), accepted to AJ
References in corpus (18)
- The NumPy array: a structure for efficient numerical computation
- A giant comet-like cloud of hydrogen escaping the warm Neptune-mass exoplanet GJ 436b
- Lyman- Transit Spectroscopy and the Neutral Hydrogen Tail of the Hot Neptune GJ436b
- Hubble PanCET: An extended upper atmosphere of neutral hydrogen around the warm Neptune GJ 3470 b
- High-resolution confirmation of an extended helium atmosphere around WASP-107b
- The long egress of GJ~436b's giant exosphere
- Reconnaissance of the TRAPPIST-1 exoplanet system in the Lyman- line
- Towards Space-like Photometric Precision from the Ground with Beam-Shaping Diffusers
- Confirmation of WASP-107b's extended Helium atmosphere with Keck II/NIRSPEC
- Transmission spectroscopy of the inflated exoplanet WASP-52b, and evidence for a bright region on the stellar surface
- No hydrogen exosphere detected around the super-Earth HD97658 b
- Is pi Men c's atmosphere hydrogen-dominated? Insights from a non-detecton of Hy Ly-alpha absorption
- Active cool stars and He I 10830 Å: the coronal connection
- WASP-52b. The effect of starspot correction on atmospheric retrievals
- The high-energy environment and atmospheric escape of the mini-Neptune K2-18 b
- Lyman-alpha in the GJ 1132 System: Stellar Emission and Planetary Atmospheric Evolution
- HiPERCAM: A high-speed, quintuple-beam CCD camera for the study of rapid variability in the Universe
- The Oxyometer: A Novel Instrument Concept for Characterizing Exoplanet Atmospheres
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- The GAPS Programme at TNG. XXIX. No detection of reflected light from 51 Peg b using optical high-resolution spectroscopy