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A Non-potential Model for the Sun's Open Magnetic Flux
by
Mackay, D H
, Constable, J A
, Yeates, A R
, van Ballegooijen, A A
in
Coronal mass ejection
/ Interplanetary magnetic field
/ Magnetic fields
/ Magnetic flux
/ Magnetism
/ Mathematical models
/ Potential fields
/ Shearing
/ Solar corona
/ Solar cycle
/ Solar magnetic field
/ Solar maximum
/ Variation
2010
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A Non-potential Model for the Sun's Open Magnetic Flux
by
Mackay, D H
, Constable, J A
, Yeates, A R
, van Ballegooijen, A A
in
Coronal mass ejection
/ Interplanetary magnetic field
/ Magnetic fields
/ Magnetic flux
/ Magnetism
/ Mathematical models
/ Potential fields
/ Shearing
/ Solar corona
/ Solar cycle
/ Solar magnetic field
/ Solar maximum
/ Variation
2010
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
A Non-potential Model for the Sun's Open Magnetic Flux
by
Mackay, D H
, Constable, J A
, Yeates, A R
, van Ballegooijen, A A
in
Coronal mass ejection
/ Interplanetary magnetic field
/ Magnetic fields
/ Magnetic flux
/ Magnetism
/ Mathematical models
/ Potential fields
/ Shearing
/ Solar corona
/ Solar cycle
/ Solar magnetic field
/ Solar maximum
/ Variation
2010
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Paper
A Non-potential Model for the Sun's Open Magnetic Flux
2010
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Overview
Measurements of the interplanetary magnetic field (IMF) over several solar cycles do not agree with computed values of open magnetic flux from potential field extrapolations. The discrepancy becomes greater around solar maximum in each cycle, when the IMF can be twice as strong as predicted by the potential field model. Here we demonstrate that this discrepancy may be resolved by allowing for electric currents in the low corona (below 2.5 solar radii). We present a quasi-static numerical model of the large-scale coronal magnetic evolution, which systematically produces these currents through flux emergence and shearing by surface motions. The open flux is increased by 75%-85% at solar maximum, but only 25% at solar minimum, bringing it in line with estimates from IMF measurements. The additional open flux in the non-potential model arises through inflation of the magnetic field by electric currents, with super-imposed fluctuations due to coronal mass ejections. The latter are modelled by the self-consistent ejection of twisted magnetic flux ropes.
Publisher
Cornell University Library, arXiv.org
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