On the Radio Emitting Particles of the Crab Nebula: Stochastic Acceleration Model
arXiv:1704.06746 · doi:10.3847/1538-4357/aa6f13
Abstract
The broadband emission of Pulsar Wind Nebulae (PWNe) is well described by non-thermal emissions from accelerated electrons and positrons. However, the standard shock acceleration model of PWNe does not account for the hard spectrum in radio wavelengths. The origin of the radio-emitting particles is also important to determine the pair production efficiency in the pulsar magnetosphere. Here, we propose a possible resolution for the particle energy distribution in PWNe; the radio-emitting particles are not accelerated at the pulsar wind termination shock but are stochastically accelerated by turbulence inside PWNe. We upgrade our past one-zone spectral evolution model including the energy diffusion, i.e., the stochastic acceleration, and apply to the Crab Nebula. A fairly simple form of the energy diffusion coefficient is assumed for this demonstrative study. For a particle injection to the stochastic acceleration process, we consider the continuous injection from the supernova ejecta or the impulsive injection associated with supernova explosion. The observed broadband spectrum and the decay of the radio flux are reproduced by tuning the amount of the particle injected to the stochastic acceleration process. The acceleration time-scale and the duration of the acceleration are required to be a few decades and a few hundred years, respectively. Our results imply that some unveiled mechanisms, such as back reaction to the turbulence, are required to make the energies of stochastically and shock accelerated particles comparable.
Accepted for publication in ApJ, 11 pages, 4 figures
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- Particle Energy Diffusion in Linear Magnetohydrodynamic Waves
- Nonlinear aspects of stochastic particle acceleration
- On the broad-band synchrotron spectra of pulsar wind nebulae
- Outflow and Emission Model of Pulsar Wind Nebulae with the Back-reaction of Particle Diffusion
- Phenomenological modelling of the Crab Nebula's broad band energy spectrum and its apparent extension
- Hitomi X-ray Observation of the Pulsar Wind Nebula G21.50.9
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- Study of maximum electron energy of sub-PeV pulsar wind nebulae by multiwavelength modelling
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- Efficient acceleration of cylindrical jets: effects of radiative cooling and tangled magnetic field
- Maximally-hard spectra from diffusive shock-acceleration in pulsar-wind nebulae
- Modeling Radio Circular Polarization in the Crab Nebula
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- Spatio-spectral-temporal Modelling of Two Young Pulsar Wind Nebulae
- Future X-ray Polarimetry of Relativistic Accelerators: PWNe and SNRs