Direct Chandra observations of a surface temperature of isolated neutron star in Cassiopeia A (Cas A NS) and its cooling scenario which has been recently simultaneously suggested by several scientific teams put stringent constraints on poorly known properties of the superfluid neutron star core. It was found also that the thermal energy losses from Cas A NS are approximately twice more intensive than it can be explained by the neutrino emission. We use these unique data and well-defined cooling scenario to estimate the strength of KSVZ axion interactions with neutrons. We speculate that enlarged energy losses occur owing to emission of axions from superfluid core of the neutron star. If the axion and neutrino losses are comparable we find...
We study the impact of axion emission in simulations of massive star explosions, as an additional so...
We study the impact of axion emission in simulations of massive star explosions, as an additional so...
Observations of the cosmological large-scale structure provide well-established neutrino mass limits...
The effect of free-streaming axion emission on numerical models for the cooling of the newly born ne...
The quantum chromodynamics (QCD) axion may modify the cooling rates of neutron stars (NSs). The axio...
Analysis of Chandra observations of the neutron star (NS) in the centre of the Cassiopeia A supernov...
If an axion of mass between about 10(exp -3) eV and 1 eV exists, axion emission would have significa...
We present a critical assessment of the SN1987A supernova cooling bound on axions and other light pa...
Axion emission by hot and dense plasmas is a new energy-loss channel for stars. Observational conseq...
We explore the thermal state of the neutron star in the Cassiopeia A supernova remnant using the rec...
According to recent results of Ho & Heinke, the Cassiopeia A supernova remnant contains a young ...
The thermal evolution of young neutron stars (NSs) reflects the neutrino emission properties of thei...
We re-examine the very stringent limits on the axion mass based on the strength and duration of the ...
AbstractIn a simple model it is demonstrated that the neutron star surface temperature evolution is ...
Calculations are performed of the cooling of neutron stars with standard and enhanced neutrino energ...
We study the impact of axion emission in simulations of massive star explosions, as an additional so...
We study the impact of axion emission in simulations of massive star explosions, as an additional so...
Observations of the cosmological large-scale structure provide well-established neutrino mass limits...
The effect of free-streaming axion emission on numerical models for the cooling of the newly born ne...
The quantum chromodynamics (QCD) axion may modify the cooling rates of neutron stars (NSs). The axio...
Analysis of Chandra observations of the neutron star (NS) in the centre of the Cassiopeia A supernov...
If an axion of mass between about 10(exp -3) eV and 1 eV exists, axion emission would have significa...
We present a critical assessment of the SN1987A supernova cooling bound on axions and other light pa...
Axion emission by hot and dense plasmas is a new energy-loss channel for stars. Observational conseq...
We explore the thermal state of the neutron star in the Cassiopeia A supernova remnant using the rec...
According to recent results of Ho & Heinke, the Cassiopeia A supernova remnant contains a young ...
The thermal evolution of young neutron stars (NSs) reflects the neutrino emission properties of thei...
We re-examine the very stringent limits on the axion mass based on the strength and duration of the ...
AbstractIn a simple model it is demonstrated that the neutron star surface temperature evolution is ...
Calculations are performed of the cooling of neutron stars with standard and enhanced neutrino energ...
We study the impact of axion emission in simulations of massive star explosions, as an additional so...
We study the impact of axion emission in simulations of massive star explosions, as an additional so...
Observations of the cosmological large-scale structure provide well-established neutrino mass limits...