Motivated by recent applications of superdiffusive transport models to shock-accelerated particle distributions in the heliosphere, we analytically solve a one-dimensional fractional diffusion-advection equation for the particle density. We derive an exact Fourier transform solution, simplify it in a weak diffusion approximation, and compare the new solution with previously available analytical results and with a semi-numerical solution based on a Fourier series expansion. We apply the results to the problem of describing the transport of energetic particles, accelerated at a traveling heliospheric shock. Our analysis shows that significant errors may result from assuming an infinite initial distance between the shock and the observer. We a...
Time-dependent solutions of a spatial diffusion equation are often used to describe the transport of...
Time-dependent solutions of a spatial diffusion equation are often used to describe the transport of...
Time-dependent solutions of a spatial diffusion equation are often used to describe the transport of...
Motivated by recent applications of superdiffusive transport models to shock-accelerated particle di...
Motivated by recent applications of superdiffusive transport models to shock-accelerated particle di...
Motivated by recent applications of superdiffusive transport models to shock-accelerated particle di...
In this effort we exactly solve the fractional diffusion–advection equation for solar cosmic-ray tra...
We investigate analytically and numerically the transport of cosmic rays following their escape from...
We investigate analytically and numerically the transport of cosmic rays following their escape from...
We investigate analytically and numerically the transport of cosmic rays following their escape from...
In this paper we exactly solve the diffusion–advection equation (DAE) for cosmic-ray transport. For ...
In this paper we exactly solve the diffusion–advection equation (DAE) for cosmic-ray transport. For ...
Context. In-situ spacecraft observations recently suggested that the transport of energetic particle...
In this paper, we present a general scenario for nondiffusive transport and we investigate the influ...
The theory of diffusive shock acceleration is extended to the case of superdiffusive transport, i.e....
Time-dependent solutions of a spatial diffusion equation are often used to describe the transport of...
Time-dependent solutions of a spatial diffusion equation are often used to describe the transport of...
Time-dependent solutions of a spatial diffusion equation are often used to describe the transport of...
Motivated by recent applications of superdiffusive transport models to shock-accelerated particle di...
Motivated by recent applications of superdiffusive transport models to shock-accelerated particle di...
Motivated by recent applications of superdiffusive transport models to shock-accelerated particle di...
In this effort we exactly solve the fractional diffusion–advection equation for solar cosmic-ray tra...
We investigate analytically and numerically the transport of cosmic rays following their escape from...
We investigate analytically and numerically the transport of cosmic rays following their escape from...
We investigate analytically and numerically the transport of cosmic rays following their escape from...
In this paper we exactly solve the diffusion–advection equation (DAE) for cosmic-ray transport. For ...
In this paper we exactly solve the diffusion–advection equation (DAE) for cosmic-ray transport. For ...
Context. In-situ spacecraft observations recently suggested that the transport of energetic particle...
In this paper, we present a general scenario for nondiffusive transport and we investigate the influ...
The theory of diffusive shock acceleration is extended to the case of superdiffusive transport, i.e....
Time-dependent solutions of a spatial diffusion equation are often used to describe the transport of...
Time-dependent solutions of a spatial diffusion equation are often used to describe the transport of...
Time-dependent solutions of a spatial diffusion equation are often used to describe the transport of...