Award Abstract # 0330829
Theoretical Studies of Interplanetary Magnetic Fields: Turbulence and Cosmic Rays

NSF Org: AGS
Division of Atmospheric and Geospace Sciences
Recipient: UNIVERSITY OF ARIZONA
Initial Amendment Date: March 18, 2004
Latest Amendment Date: May 4, 2006
Award Number: 0330829
Award Instrument: Continuing Grant
Program Manager: Paul Bellaire
AGS
 Division of Atmospheric and Geospace Sciences
GEO
 Directorate for Geosciences
Start Date: April 1, 2004
End Date: March 31, 2007 (Estimated)
Total Intended Award Amount: $240,001.00
Total Awarded Amount to Date: $240,001.00
Funds Obligated to Date: FY 2004 = $80,000.00
FY 2005 = $80,000.00

FY 2006 = $80,001.00
History of Investigator:
  • Jack Jokipii (Principal Investigator)
    jokipii@lpl.arizona.edu
Recipient Sponsored Research Office: University of Arizona
845 N PARK AVE RM 538
TUCSON
AZ  US  85721
(520)626-6000
Sponsor Congressional District: 07
Primary Place of Performance: University of Arizona
845 N PARK AVE RM 538
TUCSON
AZ  US  85721
Primary Place of Performance
Congressional District:
07
Unique Entity Identifier (UEI): ED44Y3W6P7B9
Parent UEI:
NSF Program(s): SOLAR-TERRESTRIAL
Primary Program Source: app-0104 
app-0105 

app-0106 
Program Reference Code(s): OTHR, 0000
Program Element Code(s): 152300
Award Agency Code: 4900
Fund Agency Code: 4900
Assistance Listing Number(s): 47.050

ABSTRACT

This Accomplishment Based Renewal proposal seeks three years of continued support for a program of fundamental theoretical studies and associated computer simulation and modeling, covering a range of basic solar-wind properties and their interactions with energetic particles and cosmic rays, including energetic solar and heliospheric energetic particles and galactic and anomalous cosmic rays.

A significant part of solar influences on Earth are exerted through interplanetary plasma, magnetic fields, and energetic particles. Observations of cosmic rays and energetic particles can be used to study the structures and physical parameters in regions of space inaccessible to direct measurement. Many plasma processes can best be tested in interplanetary space, so we can learn much about both laboratory and astrophysical plasmas through these studies. This work is central to understanding the science of solar-terrestrial physics and space weather. In this continuing program, the investigations undertaken would include studies of the structure of the interplanetary magnetic field and plasma, with particular emphasis given to the effect of the field's structure on cosmic ray and energetic particle acceleration, propagation, and anisotropies. This understanding could then be used to probe distant, unexplored regions of the solar atmosphere and solar wind using energetic particle observations.

The PI's previous work has led to significant new insights into the nature of the transport of solar energetic particles and promises to clarify the relation between the transport of solar particles and galactic particles, an area which has previously not received sufficient attention. The PI would extend this work to relate particle motions to the structure of the interplanetary magnetic field. Mechanisms of particle acceleration in interplanetary space and the effects of energetic particles on the dynamics of the solar wind would also be studied. The PI would further develop an implementation of the "diffusive compression mechanism" for charged-particle acceleration. This mechanism is important in a number of space physics and astrophysical contexts. Efforts to understand the full three-dimensional heliosphere and its effects on cosmic rays would be strengthened. The PI would follow up on previous work on heliospheric asymmetry in cosmic rays and magnetic fields by studying the whole problem of variations in the magnetic field and their effect on cosmic rays. This work would have a broad impact also through its support of student work, its relevance and importance to the understanding of the Earth's environment in space, and through its wider astrophysical implications.

PUBLICATIONS PRODUCED AS A RESULT OF THIS RESEARCH

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(Showing: 1 - 10 of 14)
Giacalone, J.; Jokipii, J. R. "Magnetic Footpoint Diffusion at the Sun and Its Relation to the Heliospheric Magnetic Field" The Astrophysical Journal , v.616 , 2004 , p.616
Gicalone, J., Jokipii, J. R. and Matthaeus, W. "The Structure of the Turbulent Interplanetary Magnetic Field" Astrophysical Journal , v.641 , 2006 , p.L61
J. Giacalone, J. Jokipii and W. R. Matthaeus "Structure of the Turbulent Interplanetary Magnetic Field" Astrophysical Journal , v.641 , 2007 , p.L61
Joe Giacalone, Jozsef Kota "Acceleration of Solar-Energetic Particles by Shocks" Space Science Reviews , v.124 , 2006 , p.277
Jokipii, J. R. "Charged-Particle Acceleration at the Heliospheric Termination Shock" AIP conference proceedings , v.781 , 2005 , p.283
J. R. Jokipii "Adiabatic Compression Acceleration of Fast Charged Particles" Astrophysical Journal , v.660 , 2007 , p.336
Manchester, W. B., IV; Gombosi, T. I.; De Zeeuw, D. L.; Sokolov, I. V.; Roussev, I. I.; Powell, K. G.; K?ta, J.; T?th, G.; Zurbuchen, T. H "Coronal Mass Ejection Shock and Sheath Structures Relevant to Particle Acceleration" Astrophysical Journal , v.622 , 2005 , p.1225
Manchester, W. B., IV; Gombosi, T. I.; De Zeeuw, D. L.; Sokolov, I. V.; Roussev, I. I.; Powell, K. G.; K?ta, J.; T?th, G.; Zurbuchen, T. H. "Coronal Mass Ejection Shock and Sheath Structures Relevant to Particle Acceleration" Astrophys. J. , v.622 , 2005 , p.1225
Mason, G. M.; Mazur, J. E.; Dwyer, J. R.; Jokipii, J. R.; Gold, R. E.;Krimigis, S. M. "Abundances of Heavy and Ultraheavy Ions in 3He-rich Solar Flares" The Astrophysical Journal , v.606 , 2004 , p.555
Munakata, K., S. Yasue, C. Kato, J. Kota, M. Tokumaru,M. Koyima, A.A. Darwish, T. Kuwabara, and J.W. Bieber "On the cross-field diffusion of galactic cosmic rays into an ICME" Adv. Geosci. , v.2 , 2006 , p.115
Munakata, K., S. Yasue, C. Kato, S. Akahane, M. Koyima, S. Mori,A.A. Darwish, H. Tsuchiya, H. Onuma, K. Mizutani, T. Yuda, M. Takita,and J. Kota "On the upper limiting energy of the solar diurnal anisotropy ofgalactic cosmic ray intensity" Adv. Geosci. , v.2 , 2006 , p.125
(Showing: 1 - 10 of 14)

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