Artículos de revistas
Effects of electron inertia in collisionless magnetic reconnection
Fecha
2014-10Registro en:
Andrés, Nahuel; Martin, Luis; Dmitruk, Pablo Ariel; Gomez, Daniel Osvaldo; Effects of electron inertia in collisionless magnetic reconnection; American Institute Of Physics; Physics Of Plasmas; 21; 10-2014; 1-8; 072904
1070-664X
Autor
Andrés, Nahuel
Martin, Luis
Dmitruk, Pablo Ariel
Gomez, Daniel Osvaldo
Resumen
We present a study of collisionless magnetic reconnection within the framework of full two-fluid MHD for a completely ionized hydrogen plasma, retaining the effects of the Hall current, electron pressure and electron inertia. We performed 2.5D simulations using a pseudo-spectral code with no dissipative effects. We check that the ideal invariants of the problem are conserved down to round-off errors. Our numerical results confirm that the change in the topology of the magnetic field lines is exclusively due to the presence of electron inertia. The computed reconnection rates remain a fair fraction of the Alfven velocity, which therefore qualifies as fast reconnection.