arXiv · 1903.03400
Mapping neutron star data to the equation of state using the deep neural network
Abstract
The densest state of matter in the universe is uniquely realized inside central cores of the neutron star. While first-principles evaluation of the equation of state of such matter remains as one of the longstanding problems in nuclear theory, evaluation in light of neutron star phenomenology is feasible. Here we show results from a novel theoretical technique to utilize deep neural network with supervised learning. We input up-to-date observational data from neutron star X-ray radiations into the trained neural network and estimate a relation between the pressure and the mass density. Our results are consistent with extrapolation from the conventional nuclear models and the experimental bound on the tidal deformability inferred from gravitational wave observation.
Explore related subjects
Keep this discovery
Yuki Fujimoto, Kenji Fukushima, Koichi Murase. 2019-03-08. Mapping neutron star data to the equation of state using the deep neural network. https://doi.org/10.1103/physrevd.101.054016
Cite the original work for its findings. Save a collection to share your selection of sources.