Searching for high-energy gamma-ray counterparts to Gravitational Wave sources with Fermi-LAT: a needle in a haystack
arXiv:1607.01793 · doi:10.3847/2041-8213/aa7262
Abstract
At least a fraction of Gravitational Wave (GW) progenitors are expected to emit an electromagnetic (EM) signal in the form of a short gamma-ray burst (sGRB). Discovering such a transient EM counterpart is challenging because the \LIGO/\VIRGO localization region is much larger (several hundreds of square degrees) than the field of view of X-ray, optical and radio telescopes. The Fermi Large Area Telescope (LAT) has a wide field of view ( sr), and detects sGRBs per year above 100 MeV. It can detect them not only during the short prompt phase, but also during their long-lasting high-energy afterglow phase. If other wide-field high-energy instruments such as Fermi-GBM, Swift-BAT or INTEGRAL-ISGRI cannot detect or localize with enough precision an EM counterpart during the prompt phase, the LAT can potentially pinpoint it with arcmin accuracy during the afterglow phase. This routinely happens with gamma-ray bursts. Moreover, the LAT will cover the entire localization region within hours of any triggers during normal operations, allowing the -ray flux of any EM counterpart to be measured or constrained. We illustrate two new ad hoc methods to search for EM counterparts with the LAT and their application to the GW candidate LVT151012.
Published in Apj Letters
References in corpus (10)
- Big-Bang Nucleosynthesis
- GW151226: Observation of Gravitational Waves from a 22-Solar-Mass Binary Black Hole Coalescence
- A Chandra Search for Coronal X Rays from the Cool White Dwarf GD 356
- On the GBM event seen 0.4 sec after GW 150914
- Multiwavelength observations of GRB 110731A: GeV emission from onset to afterglow
- The Needle in the 100 deg2 Haystack: Uncovering Afterglows of Fermi GRBs with the Palomar Transient Factory
- A directed search for gravitational waves from Scorpius X-1 with initial LIGO
- Searching the Gamma-ray Sky for Counterparts to Gravitational Wave Sources: Fermi GBM and LAT Observations of LVT151012 and GW151226
- The First 100 LAT Gamma-Ray Bursts: A New Detection Algorithm and Pass 8
- Another Look at Confidence Intervals: Proposal for a More Relevant and Transparent Approach