Extended gamma-ray emission from particle escape in pulsar wind nebulae -- Application to HESS J1809-193 and HESS J1825-137
Pierrick Martin, Louis de Guillebon, Eliot Collard, In\`es Mertz, Lars, Mohrmann, Giacomo Principe, Marianne Lemoine-Goumard, Alexandre Marcowith,, R\'egis Terrier, Miroslav Filipovi\'c

TL;DR
This paper presents a multi-zone model for gamma-ray emission from pulsar wind nebulae, emphasizing particle escape and applying it to HESS J1809-193 and HESS J1825-137, revealing the significance of escaped particles in observed emissions.
Contribution
It introduces a dynamic, multi-zone framework that accounts for particle escape and transport in PWNe, providing new insights into their gamma-ray emission mechanisms.
Findings
Escaped particles significantly contribute to GeV-TeV emission.
Extended emission mainly from particles in the interstellar medium.
Compact high-energy emission mainly from the pulsar wind nebula.
Abstract
There is growing evidence from gamma-ray observations at high and very high energies that particle escape is a key aspect shaping the morphological properties of pulsar wind nebulae (PWNe) at various evolutionary stages. We aim to provide a simple model for the gamma-ray emission from these objects including the transport of particles across the different components of the system. We applied it to sources HESS J1809-193 and HESS J1825-137. We developed a multi-zone framework applicable to dynamically young PWNe, taking into account the diffusive escape of relativistic electron-positron pairs out of the nebula into the parent supernova remnant (SNR) and their confinement downstream of the magnetic barrier of the forward shock until an eventual release into the surrounding interstellar medium (ISM). For a wide range of turbulence properties in the nebula, the GeV-TeV inverse-Compton…
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Taxonomy
TopicsAstrophysics and Cosmic Phenomena · Gamma-ray bursts and supernovae · Pulsars and Gravitational Waves Research
