Evidence for the transition of a Jacobi ellipsoid into a Maclaurin spheroid in gamma-ray bursts
arXiv:2203.16876 · doi:10.1103/PhysRevD.106.083004
Abstract
In the binary-driven hypernova (BdHN) scenario, long gamma-ray bursts (GRBs) originate in a cataclysmic event that occurs in a binary system composed of a carbon-oxygen (CO) star and a neutron star (NS) companion in close orbit. The collapse of the CO star generates at its center a newborn NS (NS), and a supernova (SN) explosion. Matter from the ejecta is accreted both onto the NS because of fallback and onto the NS companion, leading to the collapse of the latter into a black hole (BH). Each of the ingredients of the above system leads to observable emission episodes in a GRB. In particular, the NS is expected to show up (hereafter NS-rise) in the early GRB emission, nearly contemporary or superimposed to the ultrarelativistic prompt emission (UPE) phase, but with a different spectral signature. Following the NS-rise, the NS powers the afterglow emission by injecting energy into the expanding ejecta leading to synchrotron radiation. We here show that the NS-rise and the subsequent afterglow emission in both systems, GRB 180720B and GRB 190114C, are powered by the release of rotational energy of a Maclaurin spheroid, starting from the bifurcation point to the Jacobi ellipsoid sequence. This implies that the NS evolves from a triaxial Jacobi configuration, prior to the NS-rise, into the axially symmetric Maclaurin configuration observed in the GRB. The triaxial NS configuration is short-lived (less than a second) due to a copious emission of gravitational waves, before the GRB emission, and it could be in principle detected for sources located at distances closer than Mpc. This appears to be a specific process of emission of gravitational waves in the BdHN I powering long GRBs.
Accepted for publication in Physical Review D
References in corpus (17)
- PSR J0952-0607: The Fastest and Heaviest Known Galactic Neutron Star
- Teraelectronvolt emission from the -ray burst GRB 190114C
- 45 Years of Rotation of the Crab Pulsar
- Hypercritical Accretion, Induced Gravitational Collapse, and Binary-Driven Hypernovae
- The impact of glitches on young pulsar rotational evolution
- Gravitomagnetic interaction of a Kerr black hole with a magnetic field as the source of the jetted GeV radiation of gamma-ray bursts
- Astrophysics: Extreme emission seen from -ray bursts
- Neutrino Oscillations Within the Induced Gravitational Collapse Paradigm of Long Gamma-Ray Bursts
- Tuning Advanced LIGO to kilohertz signals from neutron-star collisions
- The morphology of the X-ray afterglows and of the jetted GeV emission in long GRBs
- Nature of the ultrarelativistic prompt emission phase of GRB 190114C
- An updated glitch rate law inferred from radio pulsars
- The structure of the ultrarelativistic prompt emission phase and the properties of the black hole in GRB 180720B
- On the universal late X-ray emission of binary-driven hypernovae and its possible collimation
- Unstable modes of hypermassive compact stars driven by viscosity and gravitational radiation
- Oscillations of hypermassive compact stars with gravitational radiation and viscosity
- Gravitational Radiation from Accelerating Jets