On the Possibility of Detecting Class A Stellar Engines Using Exoplanet Transit Curves
arXiv:1306.1672
Abstract
The Class A stellar engine (also known as a Shkadov thruster) is a spherical arc mirror, designed to use the impulse from a star's radiation pressure to generate a thrust force, perturbing the star's motion. If this mirror obstructs part of the stellar disc during the transit of an exoplanet, then this may be detected by studying the shape of the transit light curve, presenting another potential means by which the action of extraterrestrial intelligence (ETI) can be discerned. We model the light curves produced by exoplanets transiting a star which possesses a Shkadov thruster, and show how the parameters of the planet and the properties of the thruster can be disentangled. provided that radial velocity follow-up measurements are possible, and that other obscuring phenomena typical to exoplanet transit curves (such as the presence of starspots or intrinsic stellar noise) do not dominate. These difficulties aside, we estimate the a priori probability of detecting a Shkadov thruster during an exoplanet transit, which even given optimistic assumptions remains stubbornly low. Despite this, many exoplanet transit surveys designed for radial velocity follow-up are on the horizon, so we argue that this remains a useful serendipitous SETI technique. At worst, this technique will place an upper limit on the number of Class A stellar engines in the Solar neighbourhood; at best, this could help identify unusual transiting exoplanet systems as candidates for further investigation with other SETI methods.
20 pages, 10 figures, accepted for publication in the Journal of the British Interplanetary Society
References in corpus (9)
- The Next Generation Transit Survey (NGTS)
- CHEOPS: A Transit Photometry Mission for ESA's Small Mission Programme
- Radius determination of solar-type stars using asteroseismology: What to expect from the Kepler mission
- Transits and starspots in the WASP-6 planetary system
- Direct Measurement of the Radius and Density of the Transiting Exoplanet HD 189733B with the CHARA Array
- Exploring the Galaxy using space probes
- End-to-end interstellar communication system design for power efficiency
- Design for minimum energy in starship and interstellar communication
- Macroengineering in the Galactic Context: A New Agenda for Astrobiology
Cited by in corpus (6)
- Constraints on the circumstellar dust around KIC 8462852
- Exoplanets and SETI
- Interstellar communication. IV. Benchmarking information carriers
- Exoplanet Transits as the Foundation of an Interstellar Communications Network
- #FoundThem - 21st Century Pre-Search and Post-Detection SETI Protocols for Social and Digital Media
- Folded transit photometry