Auroral Field‐Aligned Current Signatures in Jupiter's Magnetosphere: Juno Magnetic Field Observations and Physical Modeling.
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| Title: | Auroral Field‐Aligned Current Signatures in Jupiter's Magnetosphere: Juno Magnetic Field Observations and Physical Modeling. |
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| Authors: | Kamran, A.1 (AUTHOR) ak741@leicester.ac.uk, Bunce, E. J.1 (AUTHOR), Cowley, S. W. H.1 (AUTHOR), James, M. K.1 (AUTHOR), Nichols, J. D.1 (AUTHOR), Provan, G.1 (AUTHOR), Cao, H.2,3 (AUTHOR), Hue, V.4 (AUTHOR), Greathouse, T. K.4 (AUTHOR), Gladstone, G. R.4 (AUTHOR) |
| Source: | Journal of Geophysical Research. Space Physics. Dec2022, Vol. 127 Issue 12, p1-20. 20p. |
| Subject Terms: | Magnetic fields, Magnetosphere, Juno (Space probe), Jupiter (Planet), Current sheets |
| Abstract: | We analyze magnetic data obtained during northern high‐altitude traversals of Jovian middle magnetosphere (MM) field lines during the first 10 inbound data‐taking passes of the Juno spacecraft for azimuthal field perturbations associated with magnetosphere‐ionosphere coupling currents. Full traversals across the MM region occur on all 10 passes at radial distances ∼7 to 16 RJ (T1 traversals), followed in four cases by reversed traversals (T2) at ∼4 to 7 RJ. Signatures of upward field‐aligned currents were observed in all cases, closely collocated with the statistical main auroral oval when mapped along field lines to the ionosphere. Two T1 sheets carry currents ∼10 MA per radian of azimuth in ionospheric colatitudinal layers ∼1.2°, closely comparable with the ∼8.5 MA rad−1 theoretical model value of Cowley et al. (2008, https://doi.org/10.5194/angeo-26-4051-2008). The other T1 sheets typically carry half this current ∼5.1 MA rad−1 in layers half the width ∼0.56°, thus with comparable current densities ∼425 nA m−2. The T2 currents are smaller ∼3.4 MA rad−1 with current densities ∼120 nA m−2, a difference that may relate to locations on opposite sides of the main oval as reflected in near‐contemporaneous ultraviolet observations, though ionospheric field strengths are not greatly different. Comparison with northern near‐periapsis currents observed inside ∼2 RJ on the same passes by Kotsiaros et al. (2019, https://doi.org/10.1038/s41550-019-0819-7) yields a cross‐correlation coefficient ∼0.7 with our T1 currents, though Kotsiaros et al.'s mean current value of ∼3.8 MA rad−1 is somewhat less than our overall mean T1 value ∼6.2 MA rad−1. The differences may have spatial, temporal, or methodological origins. Key Points: Upward field‐aligned currents ∼400 nA m−2 are seen at high altitudes (r ∼ 4–16 RJ) on northern auroral field lines on 10 inbound Juno passesSheets in opposite longitude sectors carry factor ∼2 different mean currents, the larger ∼4 to 10 MA rad−1 being comparable with model valuesLow‐altitude (r < ∼2 RJ) auroral currents reported on the same passes are correlated (R ∼ 0.7) but overall lower in magnitude ∼4 MA rad−1 [ABSTRACT FROM AUTHOR] |
| Copyright of Journal of Geophysical Research. Space Physics is the property of Wiley-Blackwell and its content may not be copied or emailed to multiple sites without the copyright holder's express written permission. Additionally, content may not be used with any artificial intelligence tools or machine learning technologies. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract. (Copyright applies to all Abstracts.) | |
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| Items | – Name: Title Label: Title Group: Ti Data: Auroral Field‐Aligned Current Signatures in Jupiter's Magnetosphere: Juno Magnetic Field Observations and Physical Modeling. – Name: Author Label: Authors Group: Au Data: <searchLink fieldCode="AR" term="%22Kamran%2C+A%2E%22">Kamran, A.</searchLink><relatesTo>1</relatesTo> (AUTHOR)<i> ak741@leicester.ac.uk</i><br /><searchLink fieldCode="AR" term="%22Bunce%2C+E%2E+J%2E%22">Bunce, E. J.</searchLink><relatesTo>1</relatesTo> (AUTHOR)<br /><searchLink fieldCode="AR" term="%22Cowley%2C+S%2E+W%2E+H%2E%22">Cowley, S. W. H.</searchLink><relatesTo>1</relatesTo> (AUTHOR)<br /><searchLink fieldCode="AR" term="%22James%2C+M%2E+K%2E%22">James, M. K.</searchLink><relatesTo>1</relatesTo> (AUTHOR)<br /><searchLink fieldCode="AR" term="%22Nichols%2C+J%2E+D%2E%22">Nichols, J. D.</searchLink><relatesTo>1</relatesTo> (AUTHOR)<br /><searchLink fieldCode="AR" term="%22Provan%2C+G%2E%22">Provan, G.</searchLink><relatesTo>1</relatesTo> (AUTHOR)<br /><searchLink fieldCode="AR" term="%22Cao%2C+H%2E%22">Cao, H.</searchLink><relatesTo>2,3</relatesTo> (AUTHOR)<br /><searchLink fieldCode="AR" term="%22Hue%2C+V%2E%22">Hue, V.</searchLink><relatesTo>4</relatesTo> (AUTHOR)<br /><searchLink fieldCode="AR" term="%22Greathouse%2C+T%2E+K%2E%22">Greathouse, T. K.</searchLink><relatesTo>4</relatesTo> (AUTHOR)<br /><searchLink fieldCode="AR" term="%22Gladstone%2C+G%2E+R%2E%22">Gladstone, G. R.</searchLink><relatesTo>4</relatesTo> (AUTHOR) – Name: TitleSource Label: Source Group: Src Data: <searchLink fieldCode="JN" term="%22Journal+of+Geophysical+Research%2E+Space+Physics%22">Journal of Geophysical Research. Space Physics</searchLink>. Dec2022, Vol. 127 Issue 12, p1-20. 20p. – Name: Subject Label: Subject Terms Group: Su Data: <searchLink fieldCode="DE" term="%22Magnetic+fields%22">Magnetic fields</searchLink><br /><searchLink fieldCode="DE" term="%22Magnetosphere%22">Magnetosphere</searchLink><br /><searchLink fieldCode="DE" term="%22Juno+%28Space+probe%29%22">Juno (Space probe)</searchLink><br /><searchLink fieldCode="DE" term="%22Jupiter+%28Planet%29%22">Jupiter (Planet)</searchLink><br /><searchLink fieldCode="DE" term="%22Current+sheets%22">Current sheets</searchLink> – Name: Abstract Label: Abstract Group: Ab Data: We analyze magnetic data obtained during northern high‐altitude traversals of Jovian middle magnetosphere (MM) field lines during the first 10 inbound data‐taking passes of the Juno spacecraft for azimuthal field perturbations associated with magnetosphere‐ionosphere coupling currents. Full traversals across the MM region occur on all 10 passes at radial distances ∼7 to 16 RJ (T1 traversals), followed in four cases by reversed traversals (T2) at ∼4 to 7 RJ. Signatures of upward field‐aligned currents were observed in all cases, closely collocated with the statistical main auroral oval when mapped along field lines to the ionosphere. Two T1 sheets carry currents ∼10 MA per radian of azimuth in ionospheric colatitudinal layers ∼1.2°, closely comparable with the ∼8.5 MA rad−1 theoretical model value of Cowley et al. (2008, https://doi.org/10.5194/angeo-26-4051-2008). The other T1 sheets typically carry half this current ∼5.1 MA rad−1 in layers half the width ∼0.56°, thus with comparable current densities ∼425 nA m−2. The T2 currents are smaller ∼3.4 MA rad−1 with current densities ∼120 nA m−2, a difference that may relate to locations on opposite sides of the main oval as reflected in near‐contemporaneous ultraviolet observations, though ionospheric field strengths are not greatly different. Comparison with northern near‐periapsis currents observed inside ∼2 RJ on the same passes by Kotsiaros et al. (2019, https://doi.org/10.1038/s41550-019-0819-7) yields a cross‐correlation coefficient ∼0.7 with our T1 currents, though Kotsiaros et al.'s mean current value of ∼3.8 MA rad−1 is somewhat less than our overall mean T1 value ∼6.2 MA rad−1. The differences may have spatial, temporal, or methodological origins. Key Points: Upward field‐aligned currents ∼400 nA m−2 are seen at high altitudes (r ∼ 4–16 RJ) on northern auroral field lines on 10 inbound Juno passesSheets in opposite longitude sectors carry factor ∼2 different mean currents, the larger ∼4 to 10 MA rad−1 being comparable with model valuesLow‐altitude (r < ∼2 RJ) auroral currents reported on the same passes are correlated (R ∼ 0.7) but overall lower in magnitude ∼4 MA rad−1 [ABSTRACT FROM AUTHOR] – Name: AbstractSuppliedCopyright Label: Group: Ab Data: <i>Copyright of Journal of Geophysical Research. Space Physics is the property of Wiley-Blackwell and its content may not be copied or emailed to multiple sites without the copyright holder's express written permission. Additionally, content may not be used with any artificial intelligence tools or machine learning technologies. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract.</i> (Copyright applies to all Abstracts.) |
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| RecordInfo | BibRecord: BibEntity: Identifiers: – Type: doi Value: 10.1029/2022JA030431 Languages: – Code: eng Text: English PhysicalDescription: Pagination: PageCount: 20 StartPage: 1 Subjects: – SubjectFull: Magnetic fields Type: general – SubjectFull: Magnetosphere Type: general – SubjectFull: Juno (Space probe) Type: general – SubjectFull: Jupiter (Planet) Type: general – SubjectFull: Current sheets Type: general Titles: – TitleFull: Auroral Field‐Aligned Current Signatures in Jupiter's Magnetosphere: Juno Magnetic Field Observations and Physical Modeling. Type: main BibRelationships: HasContributorRelationships: – PersonEntity: Name: NameFull: Kamran, A. – PersonEntity: Name: NameFull: Bunce, E. J. – PersonEntity: Name: NameFull: Cowley, S. W. H. – PersonEntity: Name: NameFull: James, M. K. – PersonEntity: Name: NameFull: Nichols, J. D. – PersonEntity: Name: NameFull: Provan, G. – PersonEntity: Name: NameFull: Cao, H. – PersonEntity: Name: NameFull: Hue, V. – PersonEntity: Name: NameFull: Greathouse, T. K. – PersonEntity: Name: NameFull: Gladstone, G. R. IsPartOfRelationships: – BibEntity: Dates: – D: 01 M: 12 Text: Dec2022 Type: published Y: 2022 Identifiers: – Type: issn-print Value: 21699380 Numbering: – Type: volume Value: 127 – Type: issue Value: 12 Titles: – TitleFull: Journal of Geophysical Research. Space Physics Type: main |
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