Gravitational Microlensing Events as a Target for SETI project
arXiv:1509.05504 · doi:10.3847/0004-637X/828/1/19
Abstract
Detection of signals from a possible extrasolar technological civilization is one of the challenging efforts of science. In this work, we propose using natural telescopes made of single or binary gravitational lensing systems to magnify leakage of electromagnetic signals from a remote planet harbours an Extra Terrestrial Intelligent (ETI) technology. The gravitational microlensing surveys are monitoring a large area of Galactic bulge for searching microlensing events and they find more than events per year. These lenses are capable of playing the role of natural telescopes and in some occasions they can magnify radio band signals from the planets orbiting around the source stars in gravitational microlensing systems. Assuming that frequency of electromagnetic waves used for telecommunication in ETIs is similar to ours, we propose follow-up observation of microlensing events with radio telescopes such as Square Kilometre Array (SKA), Low Frequency Demonstrators (LFD) and Mileura Wide-Field Array (MWA). Amplifying signals from the leakage of broadcasting by an Earth-like civilizations will allow us to detect them up to center of Milky Way galaxy. Our analysis shows that in binary microlensing systems, the probability of amplification of signals from ETIs is more than that in single microlensing events. Finally we propose target of opportunity mode for follow-up observations of binary microlensing events with SKA as a new observational program for searching ETIs. Using the optimistic values for the factors of Drake equation provides detection of about one event per year.
14 pages, 8 figures, accepted in ApJ
References in corpus (5)
- One or more bound planets per Milky Way star from microlensing observations
- Spitzer Parallax of OGLE-2015-BLG-0966: A Cold Neptune in the Galactic Disk
- OGLE-III Microlensing Events and the Structure of the Galactic Bulge
- Adaptive Contouring -- an efficient way to calculate microlensing light curves of extended sources
- Gravitational Microlensing I: A Unique Astrophysical Tool
Cited by in corpus (9)
- Obscured Active Galactic Nuclei
- An Opportunistic Search for ExtraTerrestrial Intelligence (SETI) with the Murchison Widefield Array
- Detection of Exoplanet as a Binary Source of Microlensing Events in WFIRST Survey
- Microlensed Radio Emission from Exoplanets
- Earth through the looking glass: how frequently are we detected by other civilisations through photometric microlensing?
- In Search of Extraterrestrial Artificial Intelligence Through Dyson Sphere-like structures around Primordial Black Holes
- Measuring Limb Darkening of Stars in high magnification Microlensing Events by the Finite Element Method
- Microlensing Signatures of Dyson Sphere-like Structures around Primordial Black Holes as Technosignatures of Extraterrestrial Advanced Civilizations
- Eclipsing negative-parity image of gravitational microlensing by a giant-lens star