Conductivity in neutron star crusts
Neutron star crust conductivity, obtaining electrical conductivity formula for outer kilometer
Engineering topics
Publications and source records attributed to Canuto, V..
Neutron star crust conductivity, obtaining electrical conductivity formula for outer kilometer
Neutrino production by synchroton process /magnetic bremsstrahlung/ in relativistic electron gas under intense magnetic field
Magnetic field effects on Compton scattering and radiative opacity, considering longitudinal and transverse propagation with circular polarization
Plasmon decay by neutrinos emission in strong magnetic field, examining parallel and perpendicular propagation
Degenerate relativistic electrons in intense magnetic field, computing transverse electrical conductivity
Bremsstrahlung radiation in intense magnetic field proposed as emission mechanism from pulsars, discussing absorption coefficient
Electrical conductivity and conductive opacity for relativistic electron gas in presence of ions taking into account ion-ion interaction
Decay rate of longitudinal plasmon into neutrino-antineutrino pair in strong magnetic field
Longitudinal electrical conductivity of relativistic gas in intense magnetic field
Electron bremsstrahlung in intense magnetic fields calculated for emission rate and absorption coefficient in large quantum number limits
Dirac equation in external electromagnetic fields, deriving solution for constant orthogonal electric and magnetic fields encountered in plasma transport
Radio emission from magnetic neutron stars as possible model for pulsars, noting optical and IR emission bands
Rotating and oscillating magnetic neutron stars causing pulsars radio and optical signals, stressing UV line emissions theory
Thermodynamic approach to equation of state of magnetized Fermi gas, deriving energy eigenvalues of free electron in magnetic field
Quantum theory of electron gas with anomalous magnetic moments in intense magnetic fields, noting pair creation from thermodynamic energy in system
Relativistic electron gas in strong magnetic field, obtaining equation of state with quantum theory
Magnetized Fermi gas equation of state, normal stresses, energy and particle densities, degenerate behavior and grand partition function
Induced magnetic moment of magnetized Fermi gas, noting change in magnetic nature with variations in electron density