The aim of this work is to investigate and characterise particle behaviour in a 3D MHD model of a reconnecting magnetic separator. We use a relativistic guiding-centre test-particle code to investigate electron and proton acceleration in snapshots from 3D MHD separator reconnection experiments, and compare the results with findings from an analytical separator reconnection model studied in a previous investigation. The behaviour (and acceleration) of large distributions of particles are examined in detail for both analytical and numerical separator reconnection models. Differences in acceleration sites are recovered and discussed, together with the dependence of final particle energy ranges upon the dimensions of the models and the stage of...
Observations suggest that particle acceleration in solar flares occurs in the magnetic reconnection ...
A.B. would like to thank the University of St Andrews for financial support from the 7th Century Sch...
The aim of this work is to investigate and characterise particle behaviour in a (observationally-dri...
Aims. The aim of this work is to investigate and characterise particle behaviour in a 3D magnetohydr...
While the exact acceleration mechanism of energetic particles during solar flares is (as yet) unknow...
Context. While the exact acceleration mechanism of energetic particles during solar flares is (as ye...
Various topological features, for example magnetic null-points and separators, have been inferred as...
Observations suggest that particle acceleration in solar flares occurs in the magnetic reconnection ...
Observations suggest that particle acceleration in solar flares occurs in the magnetic reconnection ...
Context. The strong electric fields associated with magnetic reconnection are likely to be responsi...
Context. Understanding how the release of stored magnetic energy contributes to the generation of no...
Context: Understanding how the release of stored magnetic energy contributes to the generation of no...
We are thankful to the Higher Education Commission (HEC, Pakistan) for their financial support to on...
Context. Understanding how the release of stored magnetic energy contributes to the generation of no...
We analyse particle acceleration in explosive reconnection events in magnetically dominated proton–e...
Observations suggest that particle acceleration in solar flares occurs in the magnetic reconnection ...
A.B. would like to thank the University of St Andrews for financial support from the 7th Century Sch...
The aim of this work is to investigate and characterise particle behaviour in a (observationally-dri...
Aims. The aim of this work is to investigate and characterise particle behaviour in a 3D magnetohydr...
While the exact acceleration mechanism of energetic particles during solar flares is (as yet) unknow...
Context. While the exact acceleration mechanism of energetic particles during solar flares is (as ye...
Various topological features, for example magnetic null-points and separators, have been inferred as...
Observations suggest that particle acceleration in solar flares occurs in the magnetic reconnection ...
Observations suggest that particle acceleration in solar flares occurs in the magnetic reconnection ...
Context. The strong electric fields associated with magnetic reconnection are likely to be responsi...
Context. Understanding how the release of stored magnetic energy contributes to the generation of no...
Context: Understanding how the release of stored magnetic energy contributes to the generation of no...
We are thankful to the Higher Education Commission (HEC, Pakistan) for their financial support to on...
Context. Understanding how the release of stored magnetic energy contributes to the generation of no...
We analyse particle acceleration in explosive reconnection events in magnetically dominated proton–e...
Observations suggest that particle acceleration in solar flares occurs in the magnetic reconnection ...
A.B. would like to thank the University of St Andrews for financial support from the 7th Century Sch...
The aim of this work is to investigate and characterise particle behaviour in a (observationally-dri...