At supranuclear densities, explored in the core of neutron stars, a strong phase transition from hadronic matter to more exotic forms of matter might be present. To test this hypothesis, binary neutron-star mergers offer a unique possibility to probe matter at densities that we cannot create in any existing terrestrial experiment. In this work, we show that, if present, strong phase transitions can have a measurable imprint on the binary neutron-star coalescence and the emitted gravitational-wave signal. We construct a new parametrization of the supranuclear equation of state that allows us to test for the existence of a strong phase transition and extract its characteristic properties purely from the gravitational-wave signal of the inspir...
The composition of neutron stars at the extreme densities reached in their cores is currently unknow...
International audienceWe identify an observable imprint of a first-order hadron-quark phase transiti...
International audienceWe identify an observable imprint of a first-order hadron-quark phase transiti...
At supranuclear densities, explored in the core of neutron stars, a strong phase transition from had...
At supranuclear densities, explored in the core of neutron stars, a strong phase transition from had...
At supranuclear densities, explored in the core of neutron stars, a strong phase transition from had...
The long-awaited detection of a gravitational wave from the merger of a binary neutron star in Augus...
International audiencePossible strong first-order hadron-quark phase transitions in neutron star int...
International audiencePossible strong first-order hadron-quark phase transitions in neutron star int...
International audiencePossible strong first-order hadron-quark phase transitions in neutron star int...
International audiencePossible strong first-order hadron-quark phase transitions in neutron star int...
We study the possible occurrence of the hadron-quark phase transition (PT) during the merging of neu...
International audienceWe study the possible occurrence of the hadron-quark phase transition (PT) dur...
International audienceWe study the possible occurrence of the hadron-quark phase transition (PT) dur...
The composition of neutron stars at the extreme densities reached in their cores is currently unknow...
The composition of neutron stars at the extreme densities reached in their cores is currently unknow...
International audienceWe identify an observable imprint of a first-order hadron-quark phase transiti...
International audienceWe identify an observable imprint of a first-order hadron-quark phase transiti...
At supranuclear densities, explored in the core of neutron stars, a strong phase transition from had...
At supranuclear densities, explored in the core of neutron stars, a strong phase transition from had...
At supranuclear densities, explored in the core of neutron stars, a strong phase transition from had...
The long-awaited detection of a gravitational wave from the merger of a binary neutron star in Augus...
International audiencePossible strong first-order hadron-quark phase transitions in neutron star int...
International audiencePossible strong first-order hadron-quark phase transitions in neutron star int...
International audiencePossible strong first-order hadron-quark phase transitions in neutron star int...
International audiencePossible strong first-order hadron-quark phase transitions in neutron star int...
We study the possible occurrence of the hadron-quark phase transition (PT) during the merging of neu...
International audienceWe study the possible occurrence of the hadron-quark phase transition (PT) dur...
International audienceWe study the possible occurrence of the hadron-quark phase transition (PT) dur...
The composition of neutron stars at the extreme densities reached in their cores is currently unknow...
The composition of neutron stars at the extreme densities reached in their cores is currently unknow...
International audienceWe identify an observable imprint of a first-order hadron-quark phase transiti...
International audienceWe identify an observable imprint of a first-order hadron-quark phase transiti...