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The flow of interstellar dust through the solar system: the role of dust charging

Authors :
V. J. Sterken
N. Altobelli
S. Kempf
G. Schwehm
R. Srama
P. Strub
E. Grün
Vladimir Yu. Nosenko
Padma K. Shukla
Markus H. Thoma
Hubertus M. Thomas
Source :
AIP Conference Proceedings.
Publication Year :
2011
Publisher :
AIP, 2011.

Abstract

Interstellar dust can enter the solar system through the relative motion of the Sun with respect to the Local Interstellar Cloud. The trajectories of the dust through the solar system are not only influenced by gravitation and solar radiation pressure forces, but also by the Lorentz forces due to the interaction of the interplanetary magnetic field with the charged dust particles. The interplanetary magnetic field changes on two major time scales: 25 days (solar rotation frequency) and 22 years (solar cycle). The short‐term variability averages out for regions that are not too close (>∼2 AU) to the Sun. This interplanetary magnetic field variability causes a time‐variability in the interstellar dust densities, that is correlated to the solar cycle.In this work we characterize the flow of interstellar dust through the solar system using simulations of the dust trajectories. We start from the simple case without Lorentz forces, and expand to the full simulation. We pay attention to the different ways of mod...

Details

ISSN :
0094243X
Database :
OpenAIRE
Journal :
AIP Conference Proceedings
Accession number :
edsair.doi...........99dcfa18ddc6868a76677574687c3282