A 4-8 GHz Galactic Center Search for Periodic Technosignatures
arXiv:2305.18527 · doi:10.3847/1538-3881/acccf0
Abstract
Radio searches for extraterrestrial intelligence have mainly targeted the discovery of narrowband continuous-wave beacons and artificially dispersed broadband bursts. Periodic pulse trains, in comparison to the above technosignature morphologies, offer an energetically efficient means of interstellar transmission. A rotating beacon at the Galactic Center (GC), in particular, would be highly advantageous for galaxy-wide communications. Here, we present blipss, a CPU-based open-source software that uses a fast folding algorithm (FFA) to uncover channel-wide periodic signals in radio dynamic spectra. Running blipss on 4.5 hours of 4-8 GHz data gathered with the Robert C. Byrd Green Bank Telescope, we searched the central 6' of our Galaxy for kHz-wide signals with periods between 11-100 s and duty cycles () between 10-50%. Our searches, to our knowledge, constitute the first FFA exploration for periodic alien technosignatures. We report a non-detection of channel-wide periodic signals in our data. Thus, we constrain the abundance of 4-8 GHz extraterrestrial transmitters of kHz-wide periodic pulsed signals to fewer than one in about 600,000 stars at the GC above a 7 equivalent isotropic radiated power of W at . From an astrophysics standpoint, blipss, with its utilization of a per-channel FFA, can enable the discovery of signals with exotic radio frequency sweeps departing from the standard cold plasma dispersion law.
20 pages, 11 figures, published in AJ, in press (http://seti.berkeley.edu/blipss/)
References in corpus (8)
- The NumPy array: a structure for efficient numerical computation
- A Search for Technosignatures Around 31 Sun-like Stars with the Green Bank Telescope at 1.15-1.73 GHz
- An Opportunistic Search for ExtraTerrestrial Intelligence (SETI) with the Murchison Widefield Array
- A search for technosignatures from TRAPPIST-1, LHS 1140, and 10 planetary systems in the Kepler field with the Green Bank Telescope at 1.15-1.73 GHz
- The Breakthrough Listen Search for Intelligent Life: Technosignature Search of Transiting TESS Targets of Interest
- Spectro-temporal Emission from the Galactic Center Magnetar
- Strategies for Maximizing Detection Rate in Radio SETI
- Mathematical encoding within multi-resonant planetary systems as SETI beacons