HR: 0800h
AN: SA31A-0331 [Abstracts]
TI: New Method for Solving Inductive Electric Fields in the Ionosphere
AU: * Vanhamäki, H
EM: heikki.vanhamaki@fmi.fi
AF: Finnish Meteorological Institute, Space Research Unit, P.O.Box 503, Helsinki, FI-00101
Finland
AB:
We present a new method for calculating inductive electric fields in the ionosphere. It is well established that on large
scales the ionospheric electric field is a potential field. This is understandable, since the temporal variations of large
scale current systems are generally quite slow, in the timescales of several minutes, so inductive effects should be small.
However, studies of Alfven wave reflection have indicated that in some situations inductive phenomena could well play a
significant role in the reflection process, and thus modify the nature of ionosphere-magnetosphere coupling.
The input to our calculation method are the time series of the potential part of the ionospheric electric field together with
the Hall and Pedersen conductances. The output is the time series of the induced rotational part of the ionospheric electric
field. The calculation method works in the time-domain and can be used with non-uniform, time-dependent conductances. In
addition no particular symmetry requirements are imposed on the input potential electric field. The presented method makes
use of special non-local vector basis functions called Cartesian Elementary Current Systems (CECS). This vector basis offers
a convenient way of representing curl-free and divergence-free parts of 2-dimensional vector fields and makes it possible to
solve the induction problem using simple linear algebra. The new calculation method is validated by comparing it with
previously published results for Alfven wave reflection from uniformly conducting ionosphere.
DE: 2411 Electric fields (2712)
DE: 2431 Ionosphere/magnetosphere interactions (2736)
SC: SPA-Aeronomy [SA]
MN: Fall Meeting 2005