HR: 0800h
AN: SH51A-0251    [Abstracts]
TI: Virtual Energetic Particle Observatory for the Heliospheric Data Environment
AU: * Cooper, J F
EM: John.F.Cooper@nasa.gov
AF: NASA Goddard Space Flight Center, Heliospheric Physics Laboratory, Code 672, Greenbelt, MD 20771, United States
AU: Armstrong, T P
EM: armstrong@ftecs.com
AF: Fundamental Technologies, LLC, 2411 Ponderosa Dr Suite A, Lawrence, KA 66046-5073, United States
AU: Hill, M E
EM: matt.hill@jhuapl.edu
AF: Applied Physics Laboratory, Johns Hopkins University, 11100 Johns Hopkins Rd MP3-E128, Laurel, MD 20723-6005, United States
AU: Lal, N
EM: Nand.Lal@nasa.gov
AF: NASA Goddard Space Flight Center, Heliospheric Physics Laboratory, Code 672, Greenbelt, MD 20771, United States
AU: McGuire, R E
EM: Robert.E.McGuire@nasa.gov
AF: NASA Goddard Space Flight Center, Heliospheric Physics Laboratory, Code 672, Greenbelt, MD 20771, United States
AU: McKibben, R B
EM: bruce.mckibben@unh.edu
AF: University of New Hampshire, 9 College Rd., Durham, NH 03824, United States
AU: Narock, T W
EM: Thomas.W.Narock@nasa.gov
AF: NASA Goddard Space Flight Center, Heliospheric Physics Laboratory, Code 672, Greenbelt, MD 20771, United States
AU: Szabo, A
EM: Adam.Szabo@nasa.gov
AF: NASA Goddard Space Flight Center, Heliospheric Physics Laboratory, Code 672, Greenbelt, MD 20771, United States
AU: Tranquille, C
EM: cecil.tranquille@esa.int
AF: European Space Agency - ESTEC, Research and Scientific Support Department of ESA, ESTEC P.O. Box 299, Noordwijk, Z-H 2200AG, Netherlands
AB: The heliosphere is pervaded by interplanetary energetic particles, traditionally also called cosmic rays, from solar, internal heliospheric, and galactic sources. The particles species of interest to heliophysics extend from plasma energies to the GeV energies of galactic cosmic rays still measurably affected by heliospheric modulation and the still higher energies contributing to atmospheric ionization. The NASA and international Heliospheric Network of operational and legacy spacecraft measures interplanetary fluxes of these particles. Spatial coverage extends from the inner heliosphere and geospace to the heliosheath boundary region now being traversed by Voyager 1 and soon by Voyager 2. Science objectives include investigation of solar flare and coronal mass ejection events, acceleration and transport of interplanetary particles within the inner heliosphere, cosmic ray interactions with planetary surfaces and atmospheres, sources of suprathermal and anomalous cosmic ray ions in the outer heliosphere, and solar cycle modulation of galactic cosmic rays. The Virtual Energetic Particle Observatory (VEPO) will improve access and usability of selected spacecraft and sub-orbital NASA heliospheric energetic particle data sets as a newly approved effort within the evolving heliophysics virtual observatory environment. In this presentation, we will describe current VEPO science requirements, our initial priorities and an overview of our strategy to implement VEPO rapidly and at minimal cost by working within the high-level framework of the Virtual Heliospheric Observatory (VHO). VEPO will also leverage existing data services of NASA's Space Physics Data Facility and other existing capabilities of the U.S. and international heliospheric research communities.
DE: 2104 Cosmic rays
DE: 2114 Energetic particles (7514)
DE: 2152 Pickup ions
DE: 7514 Energetic particles (2114)
DE: 7984 Space radiation environment
SC: SPA-Solar and Heliospheric Physics [SH]
MN: 2007 Fall Meeting