Spectrum and extension of the inverse-Compton emission of the Crab Nebula from a combined Fermi-LAT and H.E.S.S. analysis
arXiv:2403.12608 · doi:10.1051/0004-6361/202348651
Abstract
The Crab Nebula is a unique laboratory for studying the acceleration of electrons and positrons through their non-thermal radiation. Observations of very-high-energy rays from the Crab Nebula have provided important constraints for modelling its broadband emission. We present the first fully self-consistent analysis of the Crab Nebula's -ray emission between 1 GeV and 100 TeV, that is, over five orders of magnitude in energy. Using the open-source software package Gammapy, we combined 11.4 yr of data from the Fermi Large Area Telescope and 80 h of High Energy Stereoscopic System (H.E.S.S.) data at the event level and provide a measurement of the spatial extension of the nebula and its energy spectrum. We find evidence for a shrinking of the nebula with increasing -ray energy. Furthermore, we fitted several phenomenological models to the measured data, finding that none of them can fully describe the spatial extension and the spectral energy distribution at the same time. Especially the extension measured at TeV energies appears too large when compared to the X-ray emission. Our measurements probe the structure of the magnetic field between the pulsar wind termination shock and the dust torus, and we conclude that the magnetic field strength decreases with increasing distance from the pulsar. We complement our study with a careful assessment of systematic uncertainties.
18+6 pages, 15+2 figures. Accepted for publication in A&A. Corresponding authors: M. Meyer, L. Mohrmann, T. Unbehaun. v2: after A&A language editing
References in corpus (20)
- Array Programming with NumPy
- The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package
- Observations of the Crab Nebula with H.E.S.S
- Gamma-ray flares from the Crab Nebula
- Background Modelling in Very-High-Energy gamma-ray Astronomy
- VHE Gamma-Ray Observation of the Crab Nebula and its Pulsar with the MAGIC telescope
- Gamma-Hadron Separation in Very-High-Energy gamma-ray astronomy using a multivariate analysis method
- When A Standard Candle Flickers
- The observation of the Crab Nebula with LHAASO-KM2A for the performance study
- Gammapy: A Python package for gamma-ray astronomy
- Towards open and reproducible multi-instrument analysis in gamma-ray astronomy
- MAGIC very large zenith angle observations of the Crab Nebula up to 100 TeV
- A Gamma-ray Pulsar Timing Array Constrains the Nanohertz Gravitational Wave Background
- Observations of the Crab Nebula and Pulsar with the Large-Sized Telescope Prototype of the Cherenkov Telescope Array
- Validation of open-source science tools and background model construction in -ray astronomy
- Multi-band Emission up to PeV Energy from the Crab Nebula in a Spatially Dependent Lepto-hadronic Model
- Ultrahigh-energy Gamma-Ray Radiation from the Crab Pulsar Wind Nebula
- Turbulent model of Crab nebula radiation
- Phenomenological modelling of the Crab Nebula's broad band energy spectrum and its apparent extension
- 2003-2019 Monitoring of the Crab emission through INTEGRAL SPI, or vice versa
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