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  • Geophysics; Computer Programming and Software  (1)
  • THERMODYNAMICS AND STATISTICAL PHYSICS  (1)
  • 1
    Publication Date: 2019-08-28
    Description: The ultimate goal of this research is to develop an understanding which is sufficiently comprehensive to allow realistic predictions of the behavior of the physical systems. Theory has a central role to play in the quest for this understanding. The level of theoretical description is dependent on three constraints: (1) the available computer hardware may limit both the number and the size of physical processes the model system can describe; (2) the fact that some natural systems may only be described in a statistical manner; and (3) the fact that some natural systems may be observable only through remote sensing which is intrinsically limited by spatial resolution and line of sight integration. From this the report discusses present accomplishments and future goals of theoretical space physics. Finally, the development and use of new supercomputer is examined.
    Keywords: THERMODYNAMICS AND STATISTICAL PHYSICS
    Type: Space Physics Strategy-Implementation Study. Volume 1: Goals, Objectives, Strategy. A Report to the Space Physics Subcommittee of the Space Science and Applications Advisory Committee; p 85-99
    Format: text
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  • 2
    Publication Date: 2019-07-13
    Description: The MOST IDS team was tasked with focusing on two general areas: The first was to participate with the Fast Plasma Investigation (FPI) team in the development of virtual detectors that model the instrument responses of the MMS FPI sensors. The virtual instruments can be 'flown through' both simulation data (from magnetohydrodynamic, hybrid, and kinetic simulations) and Cluster and THEMIS spacecraft data. The goal is to determine signatures of magnetic reconnection expected during the MMS mission. Such signatures can serve as triggers for selection of burst mode downloads. The chapter contributed by the FPI team covers that effort in detail and, therefore, most of that work has not been included here. The second area of emphasis, and the one detailed in this chapter, was to build on past and present knowledge of magnetic reconnection and its physical signatures. Below we describe intensive analyses of Cluster and THEMIS data together with theoretical models and simulations that delineate the plasma signatures that surround sites of reconnection, including the effects of turbulence as well as the detailed kinetic signatures that indicate proximity to reconnection sites. In particular, we point out that particles are energized in several regions, not only at the actual site of reconnection.
    Keywords: Geophysics; Computer Programming and Software
    Type: GSFC-E-DAA-TN41233 , Space Science Reviews (ISSN 0038-6308) (e-ISSN 1572-9672); 199; 1; 689-719
    Format: text
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