Role of nucleon-nucleon correlation in transport coefficients and gravitational-wave-driven -mode instability of neutron stars
arXiv:2101.07551 · doi:10.1016/j.physletb.2020.135963
Abstract
The thermal conductivity and shear viscosity of dense nuclear matter, along with the corresponding shear viscosity timescale of canonical neutron stars (NSs), are investigated, where the effect of Fermi surface depletion (i.e., the -factor effect) induced by the nucleon-nucleon correlation are taken into account. The factors which are responsible for the transport coefficients, including the equation of state for building the stellar structure, nucleon effective masses, in-medium cross sections, and the -factor at Fermi surfaces, are all calculated in the framework of the Brueckner theory. The Fermi surface depletion is found to enhance the transport coefficients by several times at high densities, which is more favorable to damping the gravitational-wave-driven -mode instability of NSs. Yet, the onset of the -factor-quenched neutron triplet superfluidity provides the opposite effects, which can be much more significant than the above mentioned -factor effect itself. Therefore, different from the previous understanding, the nucleon shear viscosity is still smaller than the lepton one in the superfluid NS matter at low temperatures. Accordingly, the shear viscosity cannot stablize canonical NSs against -mode oscillations even at quite low core temperatures K.
11 pages, 6 figures
References in corpus (8)
- Rapid Cooling of the Neutron Star in Cassiopeia A Triggered by Neutron Superfluidity in Dense Matter
- Probing Cold Dense Nuclear Matter
- Momentum sharing in imbalanced Fermi systems
- Overview of Neutron-Proton Pairing
- Tests of the nuclear equation of state and superfluid and superconducting gaps using the Cassiopeia A neutron star
- Shear viscosity in neutron star cores
- Shear viscosity of neutron matter from realistic nucleon-nucleon interactions
- r-mode instability of neutron stars in low-mass X-ray binaries: effects of Fermi surface depletion and superfluidity of dense matter
Cited by in corpus (7)
- Dense Nuclear Matter Equation of State from Heavy-Ion Collisions
- Nucleon momentum distribution of from the axially deformed relativistic mean-field model with nucleon--nucleon correlations
- Nucleon-Nucleon Short-Ranged Correlations, Decay and the Unitarity of the CKM Matrix
- Nucleon Short-Range Correlations and High-Momentum Dynamics: Implications on the Equation of State of Dense Matter
- Estimation of transport coefficients of dense hadronic and quark matter
- Neutron Star Equation of State with Nucleon Short-Range Correlations: A Concise Review and Open Issues
- Evolution of Crab Pulsar: Magnetic Inclination Angle and Spin