Deep Synoptic Array Science: First FRB and Host Galaxy Catalog

Autor: Law, C. J., Sharma, K., Ravi, V., Chen, G., Catha, M., Connor, L., Faber, J. T., Hallinan, G., Harnach, C., Hellbourg, G., Hobbs, R., Hodge, D., Hodges, M., Lamb, J. W., Rasmussen, P., Sherman, M. B., Shi, J., Simard, D., Squillace, R., Weinreb, S., Woody, D. P., Yadlapalli, N.
Rok vydání: 2023
Předmět:
Druh dokumentu: Working Paper
Popis: Fast Radio Bursts (FRBs) are a powerful and mysterious new class of transient that are luminous enough to be detected at cosmological distances. By associating FRBs to host galaxies, we can measure intrinsic and environmental properties that test FRB origin models, in addition to using them as precise probes of distant cosmic gas. The Deep Synoptic Array (DSA-110) is a radio interferometer built to maximize the rate at which it can simultaneously detect and localize FRBs. Here, we present the first sample of FRBs and host galaxies discovered by the DSA-110. This sample of 11 FRBs is the largest, most uniform sample of localized FRBs to date, as it is selected based on association to host galaxies identified in optical imaging by Pan-STARRS1. These FRBs have not been observed to repeat and their radio properties (dispersion, temporal scattering, energy) are similar to that of the known non-repeating FRB population. Most host galaxies have ongoing star formation, as has been identified before for FRB hosts. Two hosts of the new sample are massive, quiescent galaxies. The distribution of star-formation history across this host-galaxy sample shows that the delay-time distribution is wide, with a powerlaw model that spans from $\sim100$\,Myr to $\gtrsim2$\,Gyr. This requires the existence of one or more progenitor formation channels associated with old stellar populations, such as the binary evolution of compact objects.
Comment: 21 pages. Submitted to AAS Journals. Includes changes based on referee comments and improved host galaxy analysis
Databáze: arXiv