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Be stars are rapidly spinning B stars surrounded by an outflowing disc of gas in Keplerian rotation. Be star/X-ray binary systems contain a Be star and a neutron star. They are found to have non-zero eccentricities and there is evidence…

Solar and Stellar Astrophysics · Physics 2015-05-13 Rebecca G. Martin , Christopher A. Tout , J. E. Pringle

The central compact object 1E 161348$-$5055 in the supernova remnant RCW 103 has a spin period $\sim 6.67$ hr, making it the slowest isolated pulsar. It is believed that a supernova fallback disk is required to spin down the neutron star to…

High Energy Astrophysical Phenomena · Physics 2019-06-20 Kun Xu , Xiang-Dong Li

Interaction with possible fallback material, along with the magnetic fields and rotation rates at birth should determine the fates and categories of young neutron stars. This paper addresses some issues related to pure or hybrid accretion…

Astrophysics · Physics 2007-05-23 M. Ali Alpar

We perform general-relativistic hydrodynamical simulations of dynamical capture binary neutron star mergers, emphasizing the role played by the neutron star spin. Dynamical capture mergers may take place in globular clusters, as well as…

High Energy Astrophysical Phenomena · Physics 2016-01-14 William E. East , Vasileios Paschalidis , Frans Pretorius , Stuart L. Shapiro

In the binary-driven hypernova model of long gamma-ray bursts, a carbon-oxygen star explodes as a supernova in presence of a neutron star binary companion in close orbit. Hypercritical (i.e. highly super-Eddington) accretion of the ejecta…

High Energy Astrophysical Phenomena · Physics 2021-01-12 J. D. Uribe , E. A. Becerra-Vergara , J. A. Rueda

The magnetic fields of the nascent neutron stars could be submerged in the crust by rapid fallback accretion and could diffuse to the surface later in life. According to this field burial scenario young pulsars may have growing magnetic…

High Energy Astrophysical Phenomena · Physics 2017-05-03 K. Yavuz Ekşi

Fallback in core-collapse supernovae (CCSNe) plays an important role in determining the properties of the central compact remnants, which might produce a black hole (BH) hyperaccretion system in the centre of a massive CCSN. When the…

High Energy Astrophysical Phenomena · Physics 2021-08-10 Yun-Feng Wei , Tong Liu , Li Xue

The Kelvin-Helmholtz cooling epoch, lasting tens of seconds after the birth of a neutron star in a successful core-collapse supernova, is accompanied by a neutrino-driven wind. For magnetar-strength ($\sim10^{15}$ G) large scale surface…

Astrophysics · Physics 2011-09-29 Todd A. Thompson , Philip Chang , Eliot Quataert

The progenitor stars of core-collapse supernovae (CCSNe) are asymmetrically fluctuating due to turbulent convections in the late stages of their lives. The progenitor asymmetry at the pre-supernova stage has recently caught the attention as…

High Energy Astrophysical Phenomena · Physics 2018-11-28 Hiroki Nagakura , Kazuya Takahashi , Yu Yamamoto

I find that an ingredient that was added in a recent study to facilitate the delayed neutrino explosion mechanism of core collapse supernovae, namely, large scale perturbations in the pre-collapse core, has a larger positive influence on…

High Energy Astrophysical Phenomena · Physics 2018-10-23 Noam Soker

Massive stars generally end their lives as neutron stars (NSs) or black holes (BHs), with NS formation typically occurring at the low mass end and collapse to a BH more likely at the high mass end. In an intermediate regime, with a mass…

High Energy Astrophysical Phenomena · Physics 2015-06-05 Anthony L. Piro , Eric Thrane

We have extended the analytical model proposed earlier to estimate the inner disk radius of accreting neutron stars in the strong-propeller (SP) phase, and the conditions for the transitions between the strong and weak propeller (WP) phases…

High Energy Astrophysical Phenomena · Physics 2020-11-11 Unal Ertan

A core-collapse supernova is generated by the passage of a shockwave through the envelope of a massive star, where the shock wave is initially launched from the ``bounce'' of the neutron star formed during the collapse of the stellar core.…

High Energy Astrophysical Phenomena · Physics 2022-09-14 Suman Kumar Kundu , Eric R. Coughlin

In massive binary-star systems, supernova explosions can significantly alter the orbit during the formation of compact objects. Some compact objects are predicted to form via direct collapse, a scenario with negligible mass loss and no…

High Energy Astrophysical Phenomena · Physics 2025-09-03 Alejandro Vigna-Gómez

Assuming that the neutrino luminosity from the neutron star core is sufficiently high to drive supernova explosions by the neutrino-heating mechanism, we show that low-mode (l = 1, 2) convection can develop from random seed perturbations…

Astrophysics · Physics 2008-11-26 L. Scheck , T. Plewa , H. -T. Janka , K. Kifonidis , E. Mueller

A numerical rotating neutron star solver is used to study the temporal evolution of accreting neutron stars using a multi-polytrope model for the nuclear equation of state named ACB5. The solver is based on a quadrupole expansion of the…

The anisotropic emission of gravitational waves during the merger of two supermassive black holes can result in a recoil kick of the merged remnant. We show here that eccentric nuclear disks - stellar disks of eccentric, apse-aligned orbits…

Astrophysics of Galaxies · Physics 2021-11-17 Tatsuya Akiba , Ann-Marie Madigan

We identify jet-shaped morphology in the core-collapse supernova remnant (SNR) CTB 1 that includes two opposite structural features. We identify these as the imprints of a pair of jets that were among the last jets to explode the massive…

High Energy Astrophysical Phenomena · Physics 2023-12-12 Ealeal Bear , Noam Soker

We have investigated an influence of the r-mode instability on hypercritically accreting ($\dot{M}\sim 1M_\odot {y}^{-1}$) neutron stars in close binary systems during their common envelope phases based on the scenario proposed by Bethe et…

Astrophysics · Physics 2010-11-19 Shin'ichirou Yoshida , Yoshiharu Eriguchi

Recent numerical relativity simulations have shown that the final black hole produced in a binary merger can recoil with a velocity as large as 5,000 km/s. Because of enhanced gravitational-wave emission in the so-called "hang-up"…

High Energy Astrophysical Phenomena · Physics 2012-08-24 Emanuele Berti , Michael Kesden , Ulrich Sperhake
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