The production of orbitally modulated UHE photons in LS 5039
V. Bosch-Ramon, D. Khangulyan

TL;DR
This paper investigates the mechanisms behind ultra-high-energy gamma-ray emission in the binary system LS 5039, proposing an ultrarelativistic outflow acceleration scenario that aligns with observational constraints.
Contribution
It introduces a novel acceleration model involving ultrarelativistic outflows that relaxes previous constraints on magnetic fields and particle confinement in LS 5039.
Findings
IC scattering of UV photons explains the gamma-ray emission.
Synchrotron cooling constrains the magnetic field in the accelerator.
Ultrarelativistic outflow scenario can accelerate very energetic electrons.
Abstract
Gamma-ray binaries present emission that is variable and can reach UHE. The processes behind the acceleration of the particles that produce this very energetic radiation are yet to be understood. We probe the properties of the particle accelerator and the UHE photon emitter in the gamma-ray binary LS 5039. From the properties of the binary system and the UHE radiation detected by HAWC, we used analytical tools to investigate how these properties constrain the emission and acceleration regions, namely the role of synchrotron losses, particle confinement, and the accelerated particle spectrum, and propose an acceleration scenario that can relax the derived constraints. The modest target densities for hadronic processes and the overall gamma-ray orbital variability favor IC scattering of ultraviolet photons from the massive companion star by highly relativistic e-. The acceleration of the…
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Taxonomy
TopicsQuantum, superfluid, helium dynamics · Particle Accelerators and Free-Electron Lasers · Atomic and Subatomic Physics Research
