An optimal method for scheduling observations of large sky error regions for finding optical counterparts to transients
arXiv:1603.01689 · doi:10.3847/1538-4357/838/2/108
Abstract
The discovery and subsequent study of optical counterparts to transient sources is crucial for their complete astrophysical understanding. Various gamma ray burst (GRB) detectors, and more notably the ground--based gravitational wave detectors, typically have large uncertainties in the sky positions of detected sources. Searching these large sky regions spanning hundreds of square degrees is a formidable challenge for most ground--based optical telescopes, which can usually image less than tens of square degrees of the sky in a single night. We present algorithms for optimal scheduling of such follow--up observations in order to maximize the probability of imaging the optical counterpart, based on the all--sky probability distribution of the source position. We incorporate realistic observing constraints like the diurnal cycle, telescope pointing limitations, available observing time, and the rising/setting of the target at the observatory location. We use simulations to demonstrate that our proposed algorithms outperform the default greedy observing schedule used by many observatories. Our algorithms are applicable for follow--up of other transient sources with large positional uncertainties, like Fermi--detected GRBs, and can easily be adapted for scheduling radio or space--based X--ray followup.
Submitted to ApJ. 18 pages, 15 figures
References in corpus (7)
- The NumPy array: a structure for efficient numerical computation
- Localization and broadband follow-up of the gravitational-wave transient GW150914
- The First Two Years of Electromagnetic Follow-Up with Advanced LIGO and Virgo
- Neutron-powered precursors of kilonovae
- iPTF Search for an Optical Counterpart to Gravitational Wave Trigger GW150914
- Maximising the detection probability of kilonovae associated with gravitational wave observations
- Scheduling and calibration strategy for continuous radio monitoring of 1700 sources every three days
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