Ultrahigh-Energy Cosmic Rays from the "En Caul" Birth of Magnetars
arXiv:1601.02625 · doi:10.3847/0004-637X/826/1/97
Abstract
Rapidly-spinning magnetars can potentially form by the accretion induced collapse of a white dwarf or by neutron star mergers if the equation of state of nuclear density matter is such that two low mass neutron stars can sometimes form a massive neutron star rather than a black hole. In either case, the newly born magnetar is an attractive site for producing ultrahigh-energy cosmic rays (particles with individual energies exceeding ; UHECRs). The short-period spin and strong magnetic field are able to accelerate particles up to the appropriate energies, and the composition of material on and around the magnetar may naturally explain recent inferences of heavy elements in UHECRs. We explore whether the small amount of natal debris surrounding these magnetars allows the UHECRs to easily escape. We also investigate the impact on the UHECRs of the unique environment around the magnetar, which consists of a bubble of relativistic particles and magnetic field within the debris. Rates and energetics of UHECRs are consistent with such an origin even though the rates of events that produce rapidly-spinning magnetars remain very uncertain. The low ejecta mass also helps limit the high-energy neutrino background associated with this scenario to be below current IceCube constraints over most of the magnetar parameter space. A unique prediction is that UHECRs may be generated in old stellar environments without strong star formation in contrast to what would be expected for other UHECR scenarios, such as active galactic nuclei or long gamma-ray bursts.
Some additional estimates and references. Main results unchanged. 11 pages, 8 figures, version accepted for publication in The Astrophysical Journal
References in corpus (18)
- Producing ultra-strong magnetic fields in neutron star mergers
- Depth of Maximum of Air-Shower Profiles at the Pierre Auger Observatory: Measurements at Energies above 10^17.8 eV
- Neutrino signatures and the neutrino-driven wind in Binary Neutron Star Mergers
- Electrodynamics of axisymmetric pulsar magnetosphere with electron-positron discharge: a numerical experiment
- Giant AGN Flares and Cosmic Ray Bursts
- Phase transitions and He-synthesis driven winds in neutrino cooled accretion disks: prospects for late flares in short gamma-ray bursts
- Ultra High Energy Cosmic Rays from Black Hole Jets of Radio Galaxies
- High-energy Cosmic Rays and Neutrinos from Semi-relativistic Hypernovae
- Electromagnetic emission from long-lived binary neutron star merger remnants I: formulation of the problem
- Gamma-Ray and Hard X-Ray Emission from Pulsar-Aided Supernovae as a Probe of Particle Acceleration in Embryonic Pulsar Wind Nebulae
- Importance of cooling in triggering the collapse of hypermassive neutron stars
- Electromagnetic emission from long-lived binary neutron star merger remnants II: lightcurves and spectra
- Testing the Magnetar Model via Late Time Radio Observations of Two Macronova Candidates
- Ultra High Energy Cosmic Ray Acceleration in Engine-driven Relativistic Supernovae
- The fate of ultrahigh energy nuclei in the immediate environment of young fast-rotating pulsars
- IceCube Constraints on Fast-Spinning Pulsars as High-Energy Neutrino Sources
- The Production of Ultra High Energy Cosmic Rays during the Early Epochs of Radio-loud AGN
- The Signature of Single-Degenerate Accretion Induced Collapse
Cited by in corpus (20)
- A fast radio burst localised to a massive galaxy
- The Fate of Neutron Star Binary Mergers
- High-Energy Neutrinos from Millisecond Magnetars formed from the Merger of Binary Neutron Stars
- On the formation of neutron stars via accretion-induced collapse in binaries
- POEMMA's Target of Opportunity Sensitivity to Cosmic Neutrino Transient Sources
- The formation of neutron star systems through accretion-induced collapse in white-dwarf binaries
- Multimessenger Implications of AT2018cow: High-Energy Cosmic Ray and Neutrino Emissions from Magnetar-Powered Super-Luminous Transients
- Neutrino-heated winds from millisecond proto-magnetars as sources of the weak r-process
- Can we observe neutrino flares in coincidence with explosive transients?
- Radio transients from accretion-induced collapse of white dwarfs
- Formation of millisecond pulsars with long orbital periods by accretion-induced collapse of white-dwarfs
- The single-degenerate model for the progenitors of accretion-induced collapse events
- Inferring the Presence of Tides in Detached White Dwarf Binaries
- Accreting CO material onto ONe white dwarfs towards accretion-induced collapse
- Orbital decay of double white dwarfs: beyond gravitational wave radiation effects
- Search for ultra high energy cosmic rays from radiogalaxy Virgo A
- High-energy neutrino signatures from pulsar remnants of binary neutron-star mergers: coincident detection prospects with gravitational waves
- He-shell flashes on the surface of oxygen-neon white dwarfs
- Comparing the Space Densities of Millisecond-Spin Magnetars and Fast X-Ray Transients
- Evolutionary relations between different types of Magnetized Compact Objects