Prospects for detecting the Rossiter-McLaughlin effect of Earth-like planets: the test case of TRAPPIST-1b and c
arXiv:1608.01334 · doi:10.1093/mnras/stw1953
Abstract
The Rossiter-McLaughlin effect is the principal method of determining the sky-projected spin--orbit angle () of transiting planets. Taking the example of the recently discovered TRAPPIST-1 system, we explore how ultracool dwarfs facilitate the measurement of the spin--orbit angle for Earth-sized planets by creating an effect that can be an order of magnitude more ample than the Doppler reflex motion caused by the planet if the star is undergoing rapid rotation. In TRAPPIST-1's case we expect the semi-amplitudes of the Rossiter-McLaughlin effect to be m/s for the known transiting planets. Accounting for stellar jitter expected for ultracool dwarfs, instrumental noise, and assuming radial velocity precisions both demonstrated and anticipated for upcoming near-infrared spectrographs, we quantify the observational effort required to measure the planets' masses and spin--orbit angles. We conclude that if the planetary system is well-aligned then can be measured to a precision of if the spectrograph is stable at the level of 2 m/s. We also investigate the measure of , the mutual inclination, when multiple transiting planets are present in the system. Lastly, we note that the rapid rotation rate of many late M-dwarfs will amplify the Rossiter-McLaughlin signal to the point where variations in the chromatic Rossiter-McLaughlin effect from atmospheric absorbers should be detectable.
11 pages, 4 figures. Accepted to MNRAS. Comments welcome
References in corpus (9)
- EXOFAST: A fast exoplanetary fitting suite in IDL
- Measuring the rotation period distribution of field M-dwarfs with Kepler
- Prospects for the Characterization and Confirmation of Transiting Exoplanets via the Rossiter-McLaughlin Effect
- Kepler Flares II: The Temporal Morphology of White-Light Flares on GJ 1243
- The Atmospheric Signatures of Super-Earths: How to Distinguish Between Hydrogen-Rich and Hydrogen-Poor Atmospheres
- The Mass of Kepler-93b and The Composition of Terrestrial Planets
- Activity and Kinematics of Ultracool Dwarfs Including An Amazing Flare Observation
- SPIRou: the near-infrared spectropolarimeter/high-precision velocimeter for the Canada-France-Hawaii telescope
- The potential for Earth-mass planet formation around brown dwarfs
Cited by in corpus (5)
- A review of possible planetary atmospheres in the TRAPPIST-1 system
- Evidence for Spin-orbit Alignment in the TRAPPIST-1 System
- Probing Transit Timing Variation and its Possible Origin with Twelve New Transits of TrES-3b
- On the radial velocity detection of additional planets in transiting, slowly rotating M-dwarf systems: the case of GJ 1132
- Revisiting the Transit Timing Variations in the TrES-3 and Qatar-1 systems with TESS data