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  • 1
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    In:  CASI
    Publication Date: 2005-11-17
    Description: Solar wind interaction with lunar far side and near side surface, and lunar magnetic fields from Explorer 35 data
    Keywords: SPACE RADIATION
    Type: NIFICANT ACCOMPLISHMENTS IN SCI., 1968 1969; P 121-126
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  • 2
    Publication Date: 2006-10-26
    Description: Simulation of wear magnetic fields observed in magnetosphere, turbulent boundary layer, and interplanetary medium regions of space
    Keywords: SPACE RADIATION
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  • 3
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    In:  CASI
    Publication Date: 2006-10-26
    Description: Magnetosphere and boundary layer measurements by IMP-I satellite - solar wind, cosmic ray, and geomagnetic field
    Keywords: SPACE RADIATION
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  • 4
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    In:  CASI
    Publication Date: 2006-10-26
    Description: IMP observation of probable lunar magnetohydrodynamic wake
    Keywords: SPACE RADIATION
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  • 5
    Publication Date: 2011-08-24
    Description: The locations of the termination shock and the heliopause are studied taking into account the effects of pickup protons. The study uses available plasma and magnetic field data from Voyagers over a 14-year period (1978-1991) and Voyager observation of the 1992-93 radio emission event. Outside 30 AU, pickup protons have a significant influence on dynamical structures of the outer heliosphere. The solar wind is treated as a mixture of electrons, solar wind protons, and interstellar pickup protons. If the magnitude of the interstellar magnetic field B(sub int) is given, one can quantitatively study the motion and location of the termination shock. The location is anti-correlated with the sun spot number and the shock has an average speed of approx. 24 km/s. Because B(sub int) is poorly known, additional information is needed in studying the termination shock. Cummings, et al. have used observations of anomalous cosmic rays to estimate the location of the shock. The observations of the 1991 GMIR and GMIR shock and the 1992-93 radio emission event provide another handle for the study of the termination shock and the heliopause. After its penetration through the termination shock, the GMIR shock continued to propagate in the subsonic region of the solar wind and eventually interacted with the heliopause. This interaction produces a transmitted shock propagating outward in the interstellar medium and a reflected shock propagating inward toward the sun in the subsonic solar wind. The plasma frequencies behind the reflected and the transmitted shock can be, respectively, responsible for the 2- and 3-kHz radio emissions. Taking into account the effects of pickup protons we found that the average locations of the termination shock and the heliopause in 1991-92 are at approximately 66 AU and 150 AU, respectively.
    Keywords: Astrophysics
    Type: International Solar Wind 8 Conference; 108; NASA-CR-199940
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  • 6
    Publication Date: 2011-08-19
    Description: The intensity profile of cosmic rays above 70 MeV observed by Voyager 2 and its relation to the interplanetary magnetic field and plasma at the beginning of the new modulation cycle from day 190, 1987 to day 345, 1988 in the region from 23.3 AU to 27.8 AU is analyzed. The cosmic ray intensity profile was approximately a series of four plateaus separated by three steps in which the intensity dropped abruptly. Each step was associated with a region in which the magnetic field, density and temperature were higher than average. The plateaus were associated with regions in which the magnetic field was alternately strong and weak. The solar wind within 200 AU during this interval can be roughly pictured as consisting of three shells between which the flow was quasiperiodic with a 26 day periodicity. The latitudinal extent of the shells in the northern hemisphere was probably less than 33 deg, since no steps were observed by Voyager 1. Drift motions might play a role during the recovery phase, just prior to the onset of the new modulation cycle, in the plateau regions between the shells, within the shells where drifts in various directions might mimic diffusion, and close to 1 AU, where large regions of intense magnetic fields have not yet formed. However the principal decreases in the cosmic ray intensity in the outer heliosphere during 1987 and 1988 were associated with the passage of broad regions of intense magnetic fields, consistent with the diffusion/convection model.
    Keywords: SPACE RADIATION
    Type: Journal of Geophysical Research (ISSN 0148-0227); 96; 3789-379
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  • 7
    Publication Date: 2011-08-11
    Description: IMP-I satellite measurements of neutral sheet in geomagnetic tail noting dimensions, motion and parameters of sheet
    Keywords: SPACE RADIATION
    Type: JOURNAL OF GEOPHYSICAL RESEARCH
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  • 8
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    In:  Other Sources
    Publication Date: 2011-08-11
    Description: Criticism of Ivanov assumption regarding IMP-I OBSERVATION of lunar wake in solar wind by magnetic field and plasma measurements
    Keywords: SPACE RADIATION
    Type: /GEOMAGNETIZM I AERONOMIIA
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  • 9
    Publication Date: 2011-08-12
    Description: Solar wind proton velocity distribution functions obtained by satellite observation
    Keywords: SPACE RADIATION
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  • 10
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    In:  Other Sources
    Publication Date: 2011-08-16
    Description: Solar wind discontinuity surfaces observed by spacecraft magnetometers determined from measured time delays and solar wind speed
    Keywords: SPACE RADIATION
    Type: ; VUE TECHNIQUE CECLES
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