Ultraluminous X-ray sources as neutrino pulsars
arXiv:1801.04810 · doi:10.1093/mnras/sty379
Abstract
The classical limit on the accretion luminosity of a neutron star is given by the Eddington luminosity. The advanced models of accretion onto magnetized neutron stars account for the appearance of magnetically confined accretion columns and allow the accretion luminosity to be higher than the Eddington value by a factor of tens. However, the recent discovery of pulsations from ultraluminous X-ray source (ULX) in NGC 5907 demonstrates that the accretion luminosity can exceed the Eddington value up to by a factor of 500. We propose a model explaining observational properties of ULX-1 in NGC 5907 without any ad hoc assumptions. We show that the accretion column at extreme luminosity becomes advective. Enormous energy release within a small geometrical volume and advection result in very high temperatures at the bottom of accretion column, which demand to account for the energy losses due to neutrino emission which can be even more effective than the radiation energy losses. We show that the total luminosity at the mass accretion rates above is dominated by the neutrino emission similarly to the case of core-collapse supernovae. We argue that the accretion rate measurements based on detected photon luminosity in case of bright ULXs powered by neutron stars can be largely underestimated due to intense neutrino emission. The recently discovered pulsating ULX-1 in galaxy NGC 5907 with photon luminosity of is expected to be even brighter in neutrinos and is thus the first known Neutrino Pulsar.
7 pages, 3 figures, 1 table, accepted for publication in MNRAS
References in corpus (15)
- Physics of Strongly Magnetized Neutron Stars
- An Ultraluminous X-ray Source Powered by An Accreting Neutron Star
- Super-critically accreting stellar-mass black holes as ultraluminous X-ray sources
- An accreting pulsar with extreme properties drives an ultraluminous x-ray source in NGC 5907
- Discovery of a 0.42-s pulsar in the ultraluminous X-ray source NGC 7793 P13
- Discovery of coherent pulsations from the Ultraluminous X-ray Source NGC 7793 P13
- The critical accretion luminosity for magnetized neutron stars
- Pulsing ULXs: tip of the iceberg?
- The ultra luminous X-ray source NuSTAR J095551+6940.8: A magnetar in a high mass X-ray binary
- Optically thick envelopes around ULXs powered by accreating neutron stars
- Propeller effect in two brightest transient X-ray pulsars: 4U 0115+63 and V 0332+53
- Spectral Changes in the Hyperluminous Pulsar in NGC 5907 as a Function of Super-Orbital Phase
- NuSTAR J095551+6940.8: a highly magnetised neutron star with super-Eddington mass accretion
- Super-Eddington accretion onto a magnetized neutron star
- Compton scattering S-matrix and cross section in strong magnetic field
Cited by in corpus (14)
- Ultraluminous X-Ray Sources
- Timing properties of ULX pulsars: optically thick envelopes and outflows
- Super-Eddington Emission from Accreting, Highly Magnetised Neutron Stars with a Multipolar Magnetic Field
- Supernova luminosity powered by magnetar-disk system
- Population synthesis of ultraluminous X-ray sources with magnetised neutron stars
- Electron-positron pairs in hot plasma of accretion column in bright X-ray pulsars
- Radiative MHD Simulations of Photon Bubbles in Radiation-Supported Magnetized Atmospheres of Neutron Stars with Isotropic Thomson Scattering
- Bright X-ray pulsars as sources of MeV neutrinos in the sky
- Populations of Neutron Star Ultraluminous X-ray Sources: Mind your b's and B's
- Fundamental physics with neutron stars
- NuSTAR observations of the ultraluminous X-ray source M33 X-8: a black hole in a very high state?
- Neutrino beaming in ultraluminous X-ray pulsars as a result of gravitational lensing by neutron stars
- Synchrotron cutoff in Ultraluminous X-ray sources
- Non-conservative Mass Transfer in the Neutron Star Stripping Model