脉冲星和伽马射线双星的相对论天体:非热过程建模

IF 1 4区 工程技术 Q4 MECHANICS
A. M. Bykov, A. E. Petrov, K. P. Levenfish
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Relativistic Astrospheres of Pulsars and Gamma-Ray Binaries: Modeling of Non-thermal Processes

Relativistic Astrospheres of Pulsars and Gamma-Ray Binaries: Modeling of Non-thermal Processes

Relativistic winds of the rotation powered pulsars in binary systems colliding with powerful winds of massive stars are producing astrospheres which are observed as bright gamma-ray sources above TeV photon energies. A long standing problem in high energy astrophysics is the nature of galactic accelerators of particles above PeV energies which are the sources of galactic cosmic rays and are producing PeV regime photons observed by ground based observatories. Recent 2D RMHD modeling revealed that gamma-ray binaries which harbor Gauss-range magnetic field in the winds collision region can accelerate particles above PeV. We present here 2D and 3D simulations of local structure of the winds collision region in gamma-ray binaries and show that in both cases the structures of magnetized flows are favorable for PeV proton acceleration. The strong magnetization of the winds of young massive stars results in prominent anisotropic shape of the relativistic pulsar wind astrosphere and may strongly affect the non-thermal emission of gamma-ray binaries. The sources can be bright in MeV emission regime and can indeed be the sources of PeV energy protons.

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来源期刊
Fluid Dynamics
Fluid Dynamics MECHANICS-PHYSICS, FLUIDS & PLASMAS
CiteScore
1.30
自引率
22.20%
发文量
61
审稿时长
6-12 weeks
期刊介绍: Fluid Dynamics is an international peer reviewed journal that publishes theoretical, computational, and experimental research on aeromechanics, hydrodynamics, plasma dynamics, underground hydrodynamics, and biomechanics of continuous media. Special attention is given to new trends developing at the leading edge of science, such as theory and application of multi-phase flows, chemically reactive flows, liquid and gas flows in electromagnetic fields, new hydrodynamical methods of increasing oil output, new approaches to the description of turbulent flows, etc.
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