HR: 09:30h
AN: NG41A-07 INVITED [PDF]
TI: Multiscale Structure of the Heliospheric Magnetic Field Strength and Solar Wind Speed: Multifractal
Structure and Distribution Functions
AU: * Burlaga, L F
EM: leonard.f.burlaga@nasa.gov
AF: Laboratory for Extraterrestrial Physics, NASA Goddard Space Flight Center, Greenbelt, MD 20771 United States
AB:
The Sun is surrounded by a region called the `heliosphere', which has been explored by the Voyager 1 spacecraft to 85 AU and
beyond. The heliosphere is filled with magnetic fields and plasmas moving from the Sun toward the interstellar medium at
supersonic speeds. The magnetic fields and have plasmas a variety of sources on the Sun and they move with a broad range of
speeds, so that they interact as they move away from the Sun. The diversity of the flows and their interactions on a wide
range of scales lead to a complex, evolving heliospheric structure. On scales from 1 to 26 days the magnetic field and speed
variations can be described by multifractals, power spectra, and probability distribution functions on various scales. The
radial evolution of the multi-scale structure of the large-scale fluctuations in the heliosphere can be described and
predicted by a deterministic multi-fluid MHD model, with observations at 1 AU as input conditions.
DE: 2124 Heliopause and solar wind termination
DE: 2134 Interplanetary magnetic fields
SC: Nonlinear Geophysics [NG]
MN: 2003 Fall Meeting