Nuclear medium cooling scenario in the light of new Cas A cooling data and the 2 M_sun pulsar mass measurements
arXiv:1308.4093 · doi:10.1103/PhysRevC.88.065805
Abstract
Recently, Elshamounty et al. performed a reanalysis of the surface temperature of the neutron star in the supernova remnant Cassiopeia A on the basis of Chandra data measured during last decade, and added a new data point. We show that all reliably known temperature data of neutron stars including those belonging to Cassiopea A can be comfortably explained in our "nuclear medium cooling" scenario of neutron stars. The cooling rates account for medium-modified one-pion exchange in dense matter, polarization effects in the pair-breaking-formation processes operating on superfluid neutrons and protons paired in the 1S_0 state, and other relevant processes. The emissivity of the pair-breaking-formation process in the 3P_2 state is a tiny quantity within our scenario. Crucial for a successful description of the Cassiopeia A cooling proves to be the thermal conductivity from both, the electrons and nucleons, being reduced by medium effects. Moreover, we exploit an EoS which stiffens at high densities due to an excluded volume effect and is capable of describing a maximum mass of 2.1 M_sun, thus including the recent measurements of PSR J1614-2230 and PSR J0348+0432.
11 pages, 10 figures, version to appear in Phys. Rev. C
References in corpus (14)
- Shapiro delay measurement of a two solar mass neutron star
- A Massive Pulsar in a Compact Relativistic Binary
- Rapid Cooling of the Neutron Star in Cassiopeia A Triggered by Neutron Superfluidity in Dense Matter
- Constraints on the high-density nuclear equation of state from the phenomenology of compact stars and heavy-ion collisions
- The Expansion Asymmetry and Age of the Cassiopeia A Supernova Remnant
- Implications of the measurement of pulsars with two solar masses for quark matter in compact stars and HIC. A NJL model case study
- Cooling of Neutron Stars. Hadronic Model
- Cooling rates of neutron stars and the young neutron star in the Cassiopeia A supernova remnant
- Measuring the Cooling of the Neutron Star in Cassiopeia A with all Chandra X-ray Observatory Detectors
- Neutrino emission due to Cooper-pair recombination in neutron stars revisited
- Thermal states of coldest and hottest neutron stars in soft X-ray transients
- Neutron star cooling: Theoretical aspects and observational constraints
- Electron-muon heat conduction in neutron star cores via the exchange of transverse plasmons
- Isospin Dependence of 1S0 Proton and Neutron Superfluidity in Asymmetric Nuclear Matter
Cited by in corpus (40)
- QCD and strongly coupled gauge theories: challenges and perspectives
- Neutron Stars and the Nuclear Equation of State
- A new quark-hadron hybrid equation of state for astrophysics - I. High-mass twin compact stars
- Solution of the Hyperon Puzzle within a Relativistic Mean-Field Model
- Limit on the Axion Decay Constant from the Cooling Neutron Star in Cassiopeia A
- Superfluidity and Superconductivity in Neutron Stars
- Nuclear Equation of state for Compact Stars and Supernovae
- Relativistic Mean-Field Models with Scaled Hadron Masses and Couplings: Hyperons and Maximum Neutron Star Mass
- Diffusive nuclear burning in cooling simulations and application to new temperature data of the Cassiopeia A neutron star
- Role of medium modifications for neutrino-pair processes from nucleon-nucleon bremsstrahlung - Impact on the protoneutron star deleptonization
- Viscosity of neutron star matter and -modes in rotating pulsars
- Thermal states of neutron stars with a consistent model of interior
- Constraining Superfluidity in Dense Matter from the Cooling of Isolated Neutron Stars
- Influence of the stiffness of the equation of state and in-medium effects on the cooling of compact stars
- Cassiopeia A and direct URCA cooling
- Role of nucleonic Fermi surface depletion in neutron star cooling
- Cooling of neutron stars in "nuclear medium cooling scenario" with stiff equation of state including hyperons
- Model-independent constraints on superfluidity from the cooling neutron star in Cassiopeia A
- Self-similarity relations for cooling superfluid neutron stars
- Cooling compact stars and phase transitions in dense QCD
- Critical endpoint and universality class of neutron superfluids in neutron stars
- Spin-polarized phases of superfluids in neutron stars
- Transport coefficients of nucleon neutron star cores for various nuclear interactions within the Brueckner-Hartree-Fock approach
- Mechanism of r-mode stability in young rapidly rotating pulsars
- Neutron star cooling and mass distributions
- Transport coefficients of magnetized neutron star cores
- Cooling of neutron stars and hybrid stars with a stiff hadronic EoS
- Hybrid cooling of the Cassiopeia A neutron star
- r-mode instability of neutron stars in low-mass X-ray binaries: effects of Fermi surface depletion and superfluidity of dense matter
- Pairing effects in nuclear pasta phase within the relativistic Thomas-Fermi formalism
- Neutron star cooling within the equation of state with induced surface tension
- Nambu-Covariant Many-Body Theory I: Perturbative Approximations
- Neutron star cooling with a dynamic stellar structure
- Strongly interacting matter in extreme magnetic fields
- Superconductivity in magnetars: Exploring type-I and type-II states in toroidal magnetic fields
- Topology of the Superconducting Heart of Neutron Stars: Effects of Microphysics and Gravitational-Wave Signatures
- Emergent chirality and superfluidity of parity-doubled baryons in neutron stars
- Thermal Evolution of Neutron Stars as a Probe of Physics beyond the Standard Model
- Axion Emission from Proton Cooper Pairs in Neutron Stars
- The chiral phase transition and equation of state in the chiral imbalance