[1] We examine Cluster observations of a so-called magnetosphere “crater FTE,” employing data from five instruments (FGM, CIS, EDI, EFW, and WHISPER), some at the highest resolution. The aim of doing this is to deepen our understanding of the reconnection nature of these events by applying recent advances in the theory of collisionless reconnection and in detailed observational work. Our data support the hypothesis of a stratified structure with regions which we show to be spatial structures. We support the bulge-like topology of the core region (R3) made up of plasma jetting transverse to reconnected field lines. We document encounters with a magnetic separatrix as a thin layer embedded in the region (R2) just outside the bulge, where the ...
Flux transfer events (FTEs) are signatures of transient reconnection at the dayside magnetopause, tr...
We report MMS observations of the ion-scale flux transfer events (FTEs) that may involve two main X ...
The occurrence of spatially and temporally variable reconnection at the Earth\u27s magnetopause lead...
[1] We examine Cluster observations of a so-called magnetosphere “crater FTE,” employing data from f...
We examine Cluster observations of a so-called magnetosphere “crater FTE,” employing data from five ...
International audienceIn this paper, we present Magnetospheric Multiscale (MMS) observations of a fl...
In this paper, we present Magnetospheric Multiscale (MMS) observations of a flux transfer event (FTE...
In this paper, we present Magnetospheric Multiscale (MMS) observations of a flux transfer event (FTE...
In this paper, we present Magnetospheric Multiscale (MMS) observations of a flux transfer event (FTE...
Flux transfer events (FTEs) are signatures of transient reconnection at the dayside magnetopause, tr...
International audienceCluster multipoint measurements are used to study two successive magnetosheath...
The occurrence of spatially and temporally variable reconnection at the Earth's magnetopause leads t...
International audienceThe occurrence of spatially and temporally variable reconnection at the Earth'...
Flux transfer events (FTEs) are signatures of transient reconnection at the dayside magnetopause, tr...
We report MMS observations of the ion-scale flux transfer events (FTEs) that may involve two main X ...
The occurrence of spatially and temporally variable reconnection at the Earth\u27s magnetopause lead...
[1] We examine Cluster observations of a so-called magnetosphere “crater FTE,” employing data from f...
We examine Cluster observations of a so-called magnetosphere “crater FTE,” employing data from five ...
International audienceIn this paper, we present Magnetospheric Multiscale (MMS) observations of a fl...
In this paper, we present Magnetospheric Multiscale (MMS) observations of a flux transfer event (FTE...
In this paper, we present Magnetospheric Multiscale (MMS) observations of a flux transfer event (FTE...
In this paper, we present Magnetospheric Multiscale (MMS) observations of a flux transfer event (FTE...
Flux transfer events (FTEs) are signatures of transient reconnection at the dayside magnetopause, tr...
International audienceCluster multipoint measurements are used to study two successive magnetosheath...
The occurrence of spatially and temporally variable reconnection at the Earth's magnetopause leads t...
International audienceThe occurrence of spatially and temporally variable reconnection at the Earth'...
Flux transfer events (FTEs) are signatures of transient reconnection at the dayside magnetopause, tr...
We report MMS observations of the ion-scale flux transfer events (FTEs) that may involve two main X ...
The occurrence of spatially and temporally variable reconnection at the Earth\u27s magnetopause lead...