Detecting bio-markers in habitable-zone earths transiting white dwarfs
arXiv:1301.4994 · doi:10.1093/mnrasl/slt026
Abstract
The characterization of the atmospheres of habitable-zone Earth-mass exoplanets that transit across main-sequence stars, let alone the detection of bio-markers in their atmospheres, will be challenging even with future facilities. It has been noted that white dwarfs (WDs) have long-lived habitable zones and that a large fraction of WDs may host planets. We point out that during a transit of an Earth-mass planet across a WD, the planet's atmospheric transmission spectrum obtains a much higher contrast over the stellar background compared to a main-sequence host, because of the small surface area of the WD. The most prominent bio-marker in the present-day terrestrial atmosphere, molecular oxygen, is readily detectable in a WD transit via its A-band absorption at ~0.76 micron. A potentially life-sustaining Earth-like planet transiting a WD can be found by assembling a suitable sample of ~500 WDs and then surveying them for transits using small telescopes. If and when such a transiting case is found, the O_2 absorption in the planetary atmospheric transmission spectrum would be detectable with the James Webb Space Telescope (JWST) in about 5 hours of total exposure time, integrated over 160 2-minute transits. Characterization of the planet atmosphere using other tracers such as water vapour and CO_2 will be considerably easier. We demonstrate this future discovery space by simulating a possible transmission spectrum that would be obtained with JWST.
erroneous factor pi/2 corrected in Eq. 1
References in corpus (17)
- Sodium Absorption From the Exoplanetary Atmosphere of HD189733b Detected in the Optical Transmission Spectrum
- Atmospheric Retrieval for Super-Earths: Uniquely Constraining the Atmospheric Composition with Transmission Spectroscopy
- SDSS DR7 White Dwarf Catalog
- A gaseous metal disk around a white dwarf
- The Chemical Composition of an Extrasolar Minor Planet
- White Dwarf Mass Distribution in the SDSS
- Finding extraterrestrial life using ground-based high-resolution spectroscopy
- Debris Disks Around White Dwarfs: The DAZ Connection
- On the Orbits of Low-mass Companions to White Dwarfs and the Fates of the Known Exoplanets
- Six White Dwarfs with Circumstellar Silicates
- SDSSJ104341.53+085558.2: A second white dwarf with a gaseous debris disc
- Transit surveys for Earths in the habitable zones of white dwarfs
- Habitable Planets Around White and Brown Dwarfs: The Perils of a Cooling Primary
- Detection limits for close eclipsing and transiting sub-stellar and planetary companions to white dwarfs in the WASP survey
- Detecting Life-bearing Extra-solar Planets with Space Telescopes
- Discovery of eclipsing white dwarf systems in a search for Earth-size companions
- Variability of Water and Oxygen Absorption Bands in the Disk-Integrated Spectra of the Earth
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