A Strange Star Scenario for the Formation of Eccentric Millisecond Pulsar PSR J1946+3417
arXiv:2106.05717 · doi:10.1088/1674-4527/21/9/231
Abstract
PSR J is a millisecond pulsar (MSP) with a spin period . Harbored in a binary with an orbital period days, the MSP is accompanied by a white dwarf (WD). The masses of the MSP and the WD were determined to be and , respectively. Specially, its orbital eccentricity is , which is challenging the recycling model of MSPs. Assuming that the neutron star in a binary may collapse to a strange star when its mass reaches a critical limit, we propose a phase transition (PT) scenario to account for the origin of the system. The sudden mass loss and the kick induced by asymmetric collapse during the PT may result in the orbital eccentricity. If the PT event takes place after the mass transfer ceases, the eccentric orbit can not be re-circularized in the Hubble time. Aiming at the masses of both components, we simulate the evolution of the progenitor of PSR J via \texttt{MESA}. The simulations show that a NS / main sequence star binary with initial masses of in an initial orbit of 2.59 days will evolve into a binary consisting of a MSP and a WD in an orbit of days. Assuming that the gravitational mass loss fraction during PT is , we simulate the effect of PT via the kick program of \texttt{BSE} with a velocity of . The results show that the PT scenario can reproduce the observed orbital period and eccentricity with higher probability then other values.
accepted to be published on RAA
References in corpus (12)
- Modules for Experiments in Stellar Astrophysics (MESA)
- An Eccentric Binary Millisecond Pulsar in the Galactic Plane
- Evolution of LMXBs under Different Magnetic Braking Prescriptions
- Magnetic Field Evolution of Neutron Stars I: Basic formalism, numerical techniques, and first results
- A Massive Millisecond Pulsar in an Eccentric Binary
- On the formation of eccentric millisecond pulsars with helium white-dwarf companions
- Metastability of hadronic compact stars
- Strange quark stars in binaries: formation rates, mergers and explosive phenomena
- Two coexisting families of compact stars: observational implications for millisecond pulsars
- Phase transition in compact stars: nucleation mechanism and -ray bursts revisited
- A strange star scenario for the formation of isolated millisecond pulsars
- Accretion-induced collapse to third family compact stars as trigger for eccentric orbits of millisecond pulsars in binaries