Quark deconfinement in neutron star cores: The effects of spin-down
arXiv:astro-ph/0603743 · doi:10.1086/506255
Abstract
We study the role of spin-down in driving quark deconfinement in the high density core of isolated neutron stars. Assuming spin-down to be solely due to magnetic braking, we obtain typical timescales to quark deconfinement for neutron stars that are born with Keplerian frequencies. Employing different equations of state (EOS), we determine the minimum and maximum neutron star masses that will allow for deconfinement via spin-down only. We find that the time to reach deconfinement is strongly dependent on the magnetic field and that this time is least for EOS that support the largest minimum mass at zero spin, unless rotational effects on stellar structure are large. For a fiducial critical density of for the transition to the quark phase (g/cm is the saturation density of nuclear matter), we find that neutron stars lighter than cannot reach a deconfined phase. Depending on the EOS, neutron stars of more than can enter a quark phase only if they are spinning faster than about 3 milliseconds as observed now, whereas larger spin periods imply that they are either already quark stars or will never become one.
4 pages, 4 figures, submitted to ApJL
Cited by in corpus (35)
- A Living Theory Catalogue for Fast Radio Bursts
- Numerical Simulation of the Hydrodynamical Combustion to Strange Quark Matter
- Supernova SN2006gy as a first ever Quark Nova?
- A three stage model for the inner engine of Gamma Ray Burst: Prompt emission and early afterglow
- General relativistic models for rotating magnetized neutron stars in conformally flat spacetime
- Nucleosynthesis in neutron-rich ejecta from quark-novae
- Fall-back crust around a quark-nova compact remnant I: The degenerate shell case with applications to SGRs, AXPs and XDINs
- Quark nova imprint in the extreme supernova explosion SN 2006gy
- Quark Nova Model for Fast Radio Bursts
- Contraction of cold neutron star due to in the presence a quark core
- The Meissner Effect and Vortex Expulsion in Color-Superconducting Quark stars, and its Role for Re-heating of Magnetars
- A Spallation Model for the Titanium-rich Supernova Remnant Cassiopeia A
- The peculiar case of the "double-humped" super-luminous supernova SN2006oz
- Spindown of Isolated Neutron Stars: Gravitational Waves or Magnetic Braking?
- A strange star scenario for the formation of isolated millisecond pulsars
- Quark-Novae in Low-mass X-ray Binaries II: Application to G87-7 and to GRB 110328A
- Quark-Novae in Low-Mass X-ray Binaries with massive neutron stars: A universal model for short-hard Gamma-Ray Bursts
- A Quark-Nova in the wake of a core-collapse Supernova: a unifying model for long duration Gamma-Ray Bursts and Fast Radio Bursts
- Low-mass X-ray Binaries with Strange Quark Stars
- Gamma Ray Burst engine activity within the quark nova scenario: Prompt emission, X-ray Plateau, and sharp drop-off
- Spin-down induced quark-hadron phase transition in cold isolated neutron stars
- Quark-Novae in massive binaries : a model for double-humped, hydrogen-poor, superluminous Supernovae
- Quark-Novae, cosmic reionization, and early r-process element production
- The structure of hybrid neutron star in Einstein- gravity
- Quark-Novae in Neutron Star-White-Dwarf Binaries: A model for luminous (spin-down powered) sub-Chandrasekhar-mass Type Ia Supernovae ?
- Quark Matter in Neutron Stars: An apercu
- Hints of a second explosion (a quark nova) in Cassiopeia A Supernova
- A new model for the origin of very metal poor stars and their chemical composition
- A Strange Star Scenario for the Formation of Eccentric Millisecond Pulsar PSR J1946+3417
- Quark-Novae in the outskirts of galaxies: An explanation of the Fast Radio Burst phenomenon
- The superluminous SN DES13S2cmm as a signature of a Quark-Nova in a He-HMXB system
- Quark-nova explosion inside a collapsar: application to Gamma Ray Bursts
- Chromo-thermal oscillations and collapse of strange stars to black holes : Astrophysical Implications
- Quark-Novae Ia in the Hubble diagram: Implications For Dark Energy
- A three stage model for the inner engine of GRBs: Prompt emission and early afterglow