Hunting for Orphaned Central Compact Objects among Radio Pulsars
arXiv:1507.05381 · doi:10.1088/0004-637X/808/2/130
Abstract
Central compact objects (CCOs) are a handful of young neutron stars found at the center of supernova remnants (SNRs). They show high thermal X-ray luminosities but no radio emission. Spin-down rate measurements of the three CCOs with X-ray pulsations indicate surface dipole fields much weaker than those of typical young pulsars. To investigate if CCOs and known radio pulsars are objects at different evolutionary stages, we carried out a census of all weak-field (<1e11 G) isolated radio pulsars in the Galactic plane to search for CCO-like X-ray emission. None of the 12 candidates is detected at X-ray energies, with luminosity limits of 1e32-1e34 erg/s. We consider a scenario in which the weak surface fields of CCOs are due to rapid accretion of supernova materials and show that as the buried field diffuses back to the surface, a CCO descendant is expected to leave the P-Pdot parameter space of our candidates at a young age of a few times 10kyr. Hence, the candidates are likely to be just old ordinary pulsars in this case. We suggest that further searches for orphaned CCO, which are aged CCOs with parent SNRs dissipated, should include pulsars with stronger magnetic fields.
Accepted for publication by ApJ
References in corpus (16)
- The ATNF Pulsar Catalogue
- eROSITA Science Book: Mapping the Structure of the Energetic Universe
- The Expansion Asymmetry and Age of the Cassiopeia A Supernova Remnant
- On the birthrates of Galactic neutron stars
- Evolution of a buried magnetic field in the central compact object neutron stars
- Tests of the nuclear equation of state and superfluid and superconducting gaps using the Cassiopeia A neutron star
- CCOs and the hidden magnetic field scenario
- On the Expansion Rate, Age, and Distance of the Supernova Remnant G266.2-1.2 (Vela Jr.)
- The Origin and Motion of PSR J0538+2817 in S147
- The neutron star in HESS J1731-347: CCOs as laboratories to study the equation of state of superdense matter
- The (Re-)Discovery of G350.1-0.3: A Young, Luminous Supernova Remnant and Its Neutron Star
- Protoneutron star dynamos: pulsars, magnetars, and radio-silent X-ray emitting neutron stars
- Modeling the X-rays from the Central Compact Object PSR J1852+0040 in Kesteven 79: Evidence for a Strongly Magnetized Neutron Star
- Constraining the Evolutionary Fate of Central Compact Objects: "Old" Radio Pulsars in Supernova Remnants
- CCO Pulsars as Anti-Magnetars: Evidence of Neutron Stars Weakly Magnetized at Birth
- More than meets the eye: magnetars in disguise
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- Central Compact Objects in Supernova Remnants
- Post fall-back evolution of multipolar magnetic fields and radio pulsar activation
- Powering Central Compact Objects with a Tangled Crustal Magnetic Field
- X-ray bounds on cooling, composition, and magnetic field of the Cassiopeia A neutron star and young central compact objects
- 3D Magneto-thermal Simulations of Tangled Crustal Magnetic Field in Central Compact Objects
- The Proper Motion of the Central Compact Object RX J0822-4300 in the Supernova Remnant Puppis A, Revisited
- A kinematic study of central compact objects and their host supernova remnants
- New XMM-Newton observation of the thermally emitting isolated neutron star 2XMM J104608.7-594306
- The Green Bank North Celestial Cap Pulsar Survey. IV: Four New Timing Solutions
- The minimum magnetic field of millisecond pulsars calculated according to accretion: application to the X-ray neutron star SAX J1808.4-3658 in a low-mass X-ray binary
- On the new braking index of PSR B0540-69: further support for magnetic field growth of neutron stars following submergence by fallback accretion
- X-ray spectral analysis of the neutron star in SNR 1E 0102.2-7219
- A hypercritical accretion scenario in Central Compact Objects accompanied with an expected neutrino burst
- The First Glitch in a Central Compact Object Pulsar: 1E 1207.4-5209
- A post-hypercritical accretion small-scale dynamo in newborn neutron stars