The Properties of the Progenitor Supernova, Pulsar Wind, and Neutron Star inside PWN G54.1+0.3
arXiv:1508.01355 · doi:10.1088/0004-637X/807/1/30
Abstract
The evolution of a pulsar wind nebula (PWN) inside a supernova remnant (SNR) is sensitive to properties of the central neutron star, pulsar wind, progenitor supernova, and interstellar medium. These properties are both difficult to measure directly and critical for understanding the formation of neutron stars and their interaction with the surrounding medium. In this paper, we determine these properties for PWN G54.1+0.3 by fitting its observed properties with a model for the dynamical and radiative evolution of a PWN inside an SNR. Our modeling suggests that the progenitor of G54.1+0.3 was an isolated ~15-20 Solar Mass star which exploded inside a massive star cluster, creating a neutron star initially spinning with period ~30-80ms. We also find that >99.9% of the pulsar's rotational energy is injected into the PWN as relativistic electrons and positrons whose energy spectrum is well characterized by a broken power-law. Lastly, we propose future observations which can both test the validity of this model and better determine the properties of this source -- in particular, its distance and the initial spin period of the central pulsar.
12 pages, 12 figures
References in corpus (10)
- Particle acceleration in relativistic collisionless shocks: Fermi process at last?
- Pulsar spins from an instability in the accretion shock of supernovae
- A Physical Relationship Between Electron-Proton Temperature Equilibration and Mach Number in Fast Collisionless Shocks
- A Dynamical Model for the Evolution of a Pulsar Wind Nebula inside a Non-Radiative Supernova Remnant
- Non-thermal emission from relativistic MHD simulations of PWNe: from synchrotron to inverse Compton
- Rotational evolution of young pulsars due to superfluid decoupling
- Distance Determination to the Crab-like PWN G54.1+0.3 and Search for its Supernova Remnant Shell
- Massive-Star Forming Infrared Loop around the Crab-like Supernova Remnant G54.1+0.3: Post Main-Sequence Triggered Star Formation?
- The Radio Emission, X-ray Emission, and Hydrodynamics of G328.4+0.2: A Comprehensive Analysis of a Luminous Pulsar Wind Nebula, its Neutron Star, and the Progenitor Supernova Explosion
- X-ray Timing Observations of PSR J1930+1852 in the Crab-like SNR G54.1+0.3
Cited by in corpus (20)
- Neutron stars structure in the context of massive gravity
- A Massive Shell of Supernova-formed Dust in SNR G54.1+0.3
- Pulsar Wind Nebulae
- VERITAS and Fermi-LAT observations of new HAWC sources
- Expansion and Brightness Changes in the Pulsar-Wind Nebula in the Composite Supernova Remnant Kes 75
- Measurement of the core-collapse progenitor mass distribution of the Small Magellanic Cloud
- On the Radio Emitting Particles of the Crab Nebula: Stochastic Acceleration Model
- The Nonstandard Properties of a "Standard" PWN: Unveiling the Mysteries of PWN G21.5-0.9 Using its IR and X-ray emission
- X-ray Spectroscopy of the Highly Magnetized Pulsar PSR J1846-0258, its Wind Nebula and Hosting Supernova Remnant Kes 75
- Constraining the origin of the puzzling source HESS J1640-465 and the PeVatron candidate HESS J1641-463 using Fermi-LAT observations
- Discovery of GeV gamma-ray emission from PWN Kes 75 and PSR J1846-0258
- Broadband X-ray Spectroscopy of the Pulsar Wind Nebula in HESS J1640-465
- Detailed Analysis of the TeV γ-Ray Sources 3HWC J1928+178, 3HWC J1930+188, and the New Source HAWC J1932+192
- Fermi-LAT Gamma-ray Emission Discovered from the Composite Supernova Remnant B0453-685 in the Large Magellanic Cloud
- Pulsar Wind Nebulae
- SNR G54.1+0.3, a PeVatron candidate unveiled by LHAASO
- NuSTAR and XMM-Newton Observations of PSR J1930+1852 and Its Pulsar Wind Nebula
- The Eel Pulsar Wind Nebula: a PeVatron-Candidate Origin for HAWC J1826-128 and HESS J1826-130
- New Hard X-Ray and Multiwavelength Study of the PeVatron Candidate PWN G0.9+0.1 in the Galactic Center Region
- A Spectroscopic Study of Supernova Remnants with the Infrared Space Observatory