Signatures of high energy protons in pulsar winds
arXiv:astro-ph/0302121 · doi:10.1051/0004-6361:20030279
Abstract
The resonant cyclotron absorption model is very successful in describing particle acceleration in plerions. A sensible prediction of this model is the presence of a substantial amount of relativistic protons in pulsar winds. Although difficult to detect, these protons may show up through their interactions either with the photons in the plerion environment or with the thermal gas in the supernova ejecta. Inelastic proton-proton (p-p) collisions are expected to be very effective in young objects, resulting in a copious production of neutral and charged pions. Charged pions produced during the first few hundred years after the supernova explosion may have time to decay into muons, whose subsequent decay may provide an additional source of electrons and positrons in these nebulae, that sums up to the pulsar input. These secondary leptons evolve just as the pairs in the pulsar wind, and signatures of their presence could be found, in principle, even in the synchrotron spectrum of older objects. p-p collisions may remain fairly efficient even in moderately old objects resulting in the production of TeV gamma-rays and neutrinos. We apply our calculations to the case of the Crab Nebula, the best studied plerion insofar, and find that existing data already allow to infer interesting constraints on the physical properties of the Crab pulsar wind.
10 pages, 11 figures, accepted for pubblication in A&A
Cited by in corpus (63)
- IceCube-Gen2: The Window to the Extreme Universe
- All-sky search for time-integrated neutrino emission from astrophysical sources with 7 years of IceCube data
- VHE Gamma-Ray Observation of the Crab Nebula and its Pulsar with the MAGIC telescope
- The Crab Nebula and Pulsar between 500 GeV and 80 TeV: Observations with the HEGRA stereoscopic air Cherenkov telescopes
- Modeling the spectral evolution of PWNe inside SNRs
- Searches for Extended and Point-like Neutrino Sources with Four Years of IceCube Data
- Peta-electron volt gamma-ray emission from the Crab Nebula
- Cosmic Neutrino Pevatrons: A Brand New Pathway to Astronomy, Astrophysics, and Particle Physics
- Potential Neutrino Signals from Galactic Gamma-Ray Sources
- The theory of pulsar winds and nebulae
- Search for time-independent neutrino emission from astrophysical sources with 3 years of IceCube data
- Non-thermal emission from relativistic MHD simulations of PWNe: from synchrotron to inverse Compton
- Signatures of pulsars in the light curves of newly formed supernova remnants
- Search for steady point-like sources in the astrophysical muon neutrino flux with 8 years of IceCube data
- Spherically symmetric relativistic MHD simulations of pulsar wind nebulae in supernova remnants
- MAGIC very large zenith angle observations of the Crab Nebula up to 100 TeV
- ASTRI Mini-Array Core Science at the Observatorio del Teide
- On ultra-high energy cosmic ray acceleration at the termination shock of young pulsar winds
- On the variability of the GeV and multi-TeV gamma-ray emission from the Crab Nebula
- In Search for Extraterrestrial High Energy Neutrinos
- Galactic discrete sources of high energy neutrinos
- Neutrinos from the pulsar wind nebulae
- IceCube Search for High-Energy Neutrino Emission from TeV Pulsar Wind Nebulae
- Discovery of the source HESS J1356-645 associated with the young and energetic PSR J1357-6429
- Evidence that Ultra-High-Energy Gamma Rays are a Universal Feature Near Powerful Pulsars
- Prospects for Detecting Galactic Sources of Cosmic Neutrinos with IceCube: An Update
- The Highest Energy HAWC Sources are Likely Leptonic and Powered by Pulsars
- Modelling Jets, Tori and Flares in Pulsar Wind Nebulae
- Insights from LHAASO and IceCube into the origin of the Galactic diffuse TeV--PeV emission
- Revised predictions of neutrino fluxes from Pulsar Wind Nebulae
- Detection of very-high-energy gamma-ray emission from the vicinity of PSR B1706-44 and G343.1-2.3 with H.E.S.S
- HESS J1809193: a halo of escaped electrons around a pulsar wind nebula?
- Sensitivity of the Cherenkov Telescope Array to spectral signatures of hadronic PeVatrons with application to Galactic Supernova Remnants
- From young to old: the evolutionary path of Pulsar Wind Nebulae
- The GeV counterpart of VER J2019+407 in the northern shell of the supernova remnant G78.2+2.1 ( Cygni)
- Neutrino analysis of the September 2010 Crab Nebula flare and time-integrated constraints on neutrino emission from the Crab using IceCube
- Neutrino Observations of LHAASO Sources: Present Constraints and Future Prospects
- Ultra-High-Energy Gamma-Ray Astronomy
- High Energy Processes in Pulsar Wind Nebulae
- Observation of an extended VHE gamma-ray emission from MSH 15-52 with CANGAROO-III
- A proposed deep sea Neutrino Observatory in the Nanhai
- High energy gamma-ray emission from compact galactic sources in the context of observations with the next generation Cherenkov Telescope Arrays
- Galactic Observatory Science with the ASTRI Mini-Array at the Observatorio del Teide
- Constraints on Hadronic Contribution to LHAASO Sources with Neutrino Observations
- Identifying Galactic Sources of High-Energy Neutrinos
- High-Energy Neutrinos Produced by Interactions of Relativistic Protons in Shocked Pulsar Winds
- Study of maximum electron energy of sub-PeV pulsar wind nebulae by multiwavelength modelling
- Neutrinos and cosmic rays
- Modeling Pulsar Wind Nebulae
- Revisiting the Chandra Observation on the Region of PSR J1809-1917: Indication of an X-ray Halo and Implication for the Origin of HESS J1809-193
- Constraints on the synchrotron self-Compton mechanism of TeV gamma ray emission from the Milagro TeV source MGRO J2019+37 within the pulsar wind nebula scenario
- Setting an upper limit for the total TeV neutrino flux from the disk of our Galaxy
- Implications of the pulsar wind nebula scenario for a TeV gamma-ray source VER J2016+371
- MHD models of Pulsar Wind Nebulae
- Exploring the high energy frontiers of the Milky Way with ground-based gamma-ray astronomy: PeVatrons and the quest for the origin of Galactic cosmic-rays
- Investigating the energy distribution of the high-energy particles in the Crab nebula
- Modeling the multiwavelength emission from G73.9+0.9: Gamma-rays from a SNR-MC interaction
- Hadronic emission from the environment of the Crab Pulsar Wind Nebula by re-accelerated particles
- Constraining the production of cosmic rays by pulsars
- The expected potential of hadronic PeVatron searches with spectral -ray data from the Southern Wide-field Gamma-ray Observatory
- The Potential for Hadronic Particle Acceleration in Galactic Pulsar Wind Nebulae
- Very high-energy gamma-ray and neutrino emission from hadronic interaction in compact binary millisecond pulsars
- HAWC Study of the Ultra-High-Energy Spectrum of MGRO J1908+06