Neutrino beaming in ultraluminous X-ray pulsars as a result of gravitational lensing by neutron stars
arXiv:2407.12573 · doi:10.1093/mnras/staf435
Abstract
X-ray pulsars experiencing extreme mass accretion rates can produce neutrino emission in the MeV energy band. Neutrinos in these systems are emitted in close proximity to the stellar surface and subsequently undergo gravitational bending in the space curved by a neutron star. This process results in the formation of a distinct beam pattern of neutrino emission and gives rise to the phenomenon of neutrino pulsars. The energy flux of neutrinos, when averaged over the neutron star's pulsation period, can differ from the isotropic neutrino energy flux, which impacts the detectability of bright pulsars in neutrinos. We investigate the process of neutrino beam pattern formation, accounting for neutron star transparency to neutrinos and gravitational bending. Based on simulated neutrino beam patterns, we estimate the potential difference between the actual and apparent neutrino luminosity. We show that the apparent luminosity can greatly exceed the actual luminosity, albeit only in a small fraction of cases, depending on the specific equation of state and the mass of the star. For example, the amplification can exceed a factor of ten for of typical neutron stars with mass of . Strong amplification is less probable for neutron stars of higher mass. In the case of strange stars, a fraction of high energy neutrinos can be absorbed and the beam pattern, as well as the amplification of apparent neutrino luminosity, depend on neutrino energy.
submitted to MNRAS, 13 pages, 9 figures
References in corpus (31)
- A Massive Pulsar in a Compact Relativistic Binary
- PSR J0030+0451 Mass and Radius from NICER Data and Implications for the Properties of Neutron Star Matter
- Physics of Strongly Magnetized Neutron Stars
- An Ultraluminous X-ray Source Powered by An Accreting Neutron Star
- PSR J0952-0607: The Fastest and Heaviest Known Galactic Neutron Star
- An accreting pulsar with extreme properties drives an ultraluminous x-ray source in NGC 5907
- A NICER View of the Nearest and Brightest Millisecond Pulsar: PSR J0437$\unicode{x2013}$4715
- An updated mass-radius analysis of the 2017-2018 NICER data set of PSR J0030+0451
- Neutron star mass and radius measurements from atmospheric model fits to X-ray burst cooling tail spectra
- Analytical representations of unified equations of state of neutron-star matter
- The Radius of the High-mass Pulsar PSR J0740+6620 with 3.6 yr of NICER Data
- Thermal luminosities of cooling neutron stars
- Pulsing ULXs: tip of the iceberg?
- Ultraluminous X-Ray Sources
- Determination of X-ray pulsar geometry with IXPE polarimetry
- On the radiation beaming of bright X-ray pulsars and constraints on neutron star mass-radius relation
- The X-ray polarimetry view of the accreting pulsar Cen X-3
- Pulsating ULXs: large pulsed fraction excludes strong beaming
- X-ray pulsar GRO J100857 as an orthogonal rotator
- X-ray polarimetry of X-ray pulsar X Persei: another orthogonal rotator?
- Complex variations of X-ray polarization in the X-ray pulsar LS V +44 17/RX J0440.9+4431
- Radiative Relativistic Magnetohydrodynamic Simulations of Neutron Star Column Accretion in Cartesian Geometry
- A polarimetrically oriented X-ray stare at the accreting pulsar EXO 2030+375
- Accreting strongly magnetised neutron stars: X-ray Pulsars
- Ultraluminous X-ray sources are beamed
- Bright X-ray Pulsars: how outflows influence beaming, pulsations and pulse phase lags
- Probing the polarized emission from SMC X-1: the brightest X-ray pulsar observed by IXPE
- Electron-positron pairs in hot plasma of accretion column in bright X-ray pulsars
- Bright X-ray pulsars as sources of MeV neutrinos in the sky
- XMM-Newton observations of PSR J0554+3107: pulsing thermal emission from a cooling high-mass neutron star
- A Lower Mass Estimate for PSR J0348+0432 Based on CHIME/Pulsar Precision Timing