Do Central Compact Objects have Carbon Atmospheres?
arXiv:2302.05893 · doi:10.3847/1538-4357/acaf55
Abstract
Only three of the dozen central compact objects (CCOs) in supernova remnants (SNRs) show thermal X-ray pulsations due to non-uniform surface temperature (hot-spots). The absence of X-ray pulsations from several unpulsed CCOs has motivated suggestions that they have uniform-temperature carbon atmospheres (UTCAs), which adequately fit their spectra with appropriate neutron star (NS) surface areas. This is in contrast to the two-temperature blackbody or hydrogen atmospheres that also fit well. Here we investigate the applicability of UTCAs to CCOs. We show the following: (i) The phase-averaged spectra of the three pulsed CCOs can also be fitted with a UTCA of the appropriate NS area, despite pulsed CCOs manifestly having non-uniform surface temperature. A good spectral fit is therefore not strong support for the UTCA model of unpulsed CCOs. (ii) An improved spectrum of one unpulsed CCO, previously analyzed with a UTCA, does not allow an acceptable fit. (iii) For two unpulsed CCOs, the UTCA does not allow a distance compatible with the SNR distance. These results imply that, in general, CCOs must have hot, localized regions on the NS surface. We derive new X-ray pulse modulation upper limits on the unpulsed CCOs, and constrain their hot spot sizes and locations. We develop an alternative model that accounts for both the pulsed and unpulsed CCOs: a range of angles between hot spot and rotation axes consistent with an exponential distribution with scale factor . We discuss physical mechanisms that could produce such small angles and small hot-spots.
23 pages, 7 figures, published in ApJ
References in corpus (23)
- Array Programming with NumPy
- The Expansion Asymmetry and Age of the Cassiopeia A Supernova Remnant
- Central Compact Objects in Supernova Remnants
- Discovery of the radio and X-ray counterpart of TeV Gamma-ray source HESS J1731-347
- A systematic study of proto-neutron star convection in three-dimensional core-collapse supernova simulations
- Model X-ray Spectra of Magnetic Neutron Stars with Hydrogen Atmospheres
- On the Expansion Rate, Age, and Distance of the Supernova Remnant G266.2-1.2 (Vela Jr.)
- Modelling mid-Z element atmospheres for strongly-magnetized neutron stars
- Discovery of a 112 ms X-ray Pulsar in Puppis A: Further Evidence of Neutron Stars Weakly Magnetized at Birth
- The neutron star in HESS J1731-347: CCOs as laboratories to study the equation of state of superdense matter
- NS 1987A in SN 1987A
- Origin of neutron star magnetic fields
- A dedicated Chandra ACIS observation of the central compact object in the Cassiopeia A supernova remnant
- Central Compact Objects in Supernova Remnants
- Diffusive nuclear burning in cooling simulations and application to new temperature data of the Cassiopeia A neutron star
- The (Re-)Discovery of G350.1-0.3: A Young, Luminous Supernova Remnant and Its Neutron Star
- Modeling the X-rays from the Central Compact Object PSR J1852+0040 in Kesteven 79: Evidence for a Strongly Magnetized Neutron Star
- A high resolution HI study towards the supernova remnant Puppis A and its environments
- X-ray bounds on cooling, composition, and magnetic field of the Cassiopeia A neutron star and young central compact objects
- Study of a new central compact object: The neutron star in the supernova remnant G15.9+0.2
- A kinematic study of central compact objects and their host supernova remnants
- The distribution of tilt angles in newly born NSs: role of interior viscosity and magnetic field
- Measuring the Non-Axially-Symmetric Surface Temperature Distribution of the Central Compact Object in Puppis A