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The Jovian system is a treasure trove of X-ray sources: diverse and dynamic atmospheric and auroral emissions, diffuse radiation belt and Io torus emissions, and plasma-surface interactions with Jupiter's moons.
X-rays studies of the solar system
B Snios, W R Dunn, C M Lisse, G Branduardi-Raymont, K Dennerl, A Bhardwaj, G R Gladstone, S Nulsen, D Bodewits, C M Jackman, and others (2019) · 1903
Earlier work this paper cites.
Upper limit to Jupiter’s X-ray flux on September 30, 1962
P. C. Fisher, D. B. Clark, A. J. Meyerott, and K. L. Smith (1964) · 1962
Earlier work this paper cites.
Upper limits to the hard X-ray flux from the quiet Sun and Jupiter
P. J. Edwards and K. G. McCracken (1967) · 1967
Earlier work this paper cites.
Upper limits to the hard X-ray fluxes from Mars, Venus, and Jupiter
R. C. Haymes, D. V. Ellis, and G. J. Fishman (1968) · 1968
Earlier work this paper cites.
Search for X-rays from the planet Jupiter
K. C. Hurley (1972) · 1972
Earlier work this paper cites.
Upper limits for X-ray emission from Jupiter as measured from the Copernicus satellite
J. F. Vesecky, J. L. Culhane, and F. J. Hawkins (1975) · 1975
Earlier work this paper cites.
Upper limits to jovian X-ray emission from the Uhuru satellite
K. C. Hurley (1975) · 1975
Earlier work this paper cites.
Characteristics of hot plasma in the jovian magnetosphere: Results from the Voyager spacecraft
S. M Krimigis, J. F Carbary, E. P Keath, C. O Bostrom, W. I Axford, G Gloeckler, L. J Lanzerotti, and T. P Armstrong (1981) · 1981
Earlier work this paper cites.
The detection of X-rays from Jupiter
A. E. Metzger, D. A. Gilman, J. L. Luthey, K. C. Hurley, H. W. Schnopper, F. D. Seward, and J. D. Sullivan (1983) · 1983
Earlier work this paper cites.
Energetic oxygen and sulfur ions in the Jovian magnetosphere and their contribution to the auroral excitation
N. Gehrels, E. C. Stone (1983) · 1983
Earlier work this paper cites.
Plasma distribution and flow
V.M. Vasyliunas (1983) · 1983
Earlier work this paper cites.
Charged particle distributions in Jupiter’s magnetosphere
N. Divine and H. B. Garrett (1983) · 1983
Earlier work this paper cites.
Global compressional oscillations of the terrestrial magnetosphere: The evidence and a model
M G Kivelson, J Etcheto, and J G Trotignon (1984) · 1984
Earlier work this paper cites.
An analytical algorithm for calculation of spectral distributions of X-ray tubes for quantitative X-ray fluorescence analysis
P. A. Pella, Liangyuan Feng, and J. A. Small (1985) · 1985
Earlier work this paper cites.
The Guelph PIXE software package
J. A. Maxwell, J. L. Campbell, and W. J. Teesdale (1989) · 1989
Earlier work this paper cites.
ROSAT-a new look at the X-ray sky
J. Trumper (1993) · 1993
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Upper limits to Jovian hard x-radiation from the Ulysses gamma ray burst experiment
K. Hurley, M. Sommer, and J. H. Waite (1993) · 1993
Earlier work this paper cites.
Empirical model of the Io plasma torus: Voyager measurements
F. Bagenal (1994) · 1994
Earlier work this paper cites.
ROSAT observations of X-ray emissions from Jupiter during the impact of comet Shoemaker-Levy 9
J. H. Waite, G. R. Gladstone, K. Franke, W. S. Lewis, A. C. Fabian, W. N. Brandt, C. Na, F. Haberl, J. T. Clarke, and K. C. Hurley (1995) · 1995
Earlier work this paper cites.
Update of meka: mekal
R. Mewe, J. S. Kaastra, and D. A. Liedahl (1995) · 1995
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Particle-induced X-ray emission spectrometry (PIXE)
S AE Johansson, J L. Campbell, and K G. Malmqvist (1995) · 1995
Earlier work this paper cites.
XSPEC: The first ten years
K.A. Arnaud (1996) · 1996
Earlier work this paper cites.
Equatorial X-ray emissions: Implications for Jupiter’s high exospheric temperatures
J.H. Waite, G.R. Gladstone, W.S. Lewis, P. Drossart, T.E. Cravens, A.N. Maurellis, B.H. Mauk, and S. Miller (1997) · 1997
Earlier work this paper cites.
Secular and local time dependence of jovian X-ray emissions
G. R. Gladstone, J. H. Waite, and W. S. Lewis (1998) · 1998
Earlier work this paper cites.
Recent results from EUVE observations of the Io plasma torus and Jupiter
G. R Gladstone and D T. Hall (1998) · 1998
Earlier work this paper cites.
Chandra X-ray observatory (CXO): overview
M. C Weisskopf, H. D Tananbaum, L. P Van Speybroeck, and S. L O’Dell (2000) · 2000
Earlier work this paper cites.
Jovian X-ray emission from solar X-ray scattering
A. N. Maurellis, T. E. Cravens, G. R. Gladstone, J. H. Waite, and L. W. Acton (2000) · 2000
Earlier work this paper cites.
The 2000 IAEA intercomparison of PIXE spectrum analysis software
M. Blaauw, J. L. Campbell, S. Fazinić, M. Jakšić, I. Orlic, and P. Van Espen (2002) · 2000
Earlier work this paper cites.
XMM-Newton observatory-i. the spacecraft and operations
F. Jansen, D. Lumb, B. Altieri, J. Clavel, M. Ehle, C. Erd, C. Gabriel, M. Guainazzi, P. Gondoin, R. Much, and others (2001) · 2001
Earlier work this paper cites.
X-ray emission from scattering and fluorescence of solar X-rays at Venus and Mars (2001)
T. E Cravens and A. N Maurellis · 2001
Earlier work this paper cites.
Collisional plasma models with APEC/APED: emission-line diagnostics of hydrogen-like and helium-like ions
R. K Smith, N. S Brickhouse, D. A Liedahl, and J. C Raymond (2001) · 2001
Earlier work this paper cites.
Origin of the main auroral oval in Jupiter’s coupled magnetosphere–ionosphere system
S. W. H. Cowley and E. J. Bunce (2001) · 2001
Earlier work this paper cites.
An auroral flare at Jupiter
JH Waite, GR Gladstone, WS Lewis, R Goldstein, DJ McComas, P Riley, RJ Walker, P Robertson, S Desai, JT Clarke, and others (2001) · 2001
Earlier work this paper cites.
Divine-Garrett model and Jovian synchrotron emission
S J. Bolton, S M. Levin, S L. Gulkis, M J. Klein, R J. Sault, B. Bhattacharya, R. M. Thorne, G. A. Dulk, and Y. Leblanc (2001) · 2001
Earlier work this paper cites.
The European photon imaging camera on XMM-Newton: the pn-CCD camera
L Strüder, U Briel, K Dennerl, R Hartmann, E Kendziorra, N Meidinger, E Pfeffermann, C Reppin, B Aschenbach, W Bornemann, and others (2001) · 2001
Earlier work this paper cites.
A pulsating auroral X-ray hot spot on Jupiter
G. R. Gladstone, J. H. Waite, D. Grodent, W. S. Lewis, F. J. Crary, R. F. Elsner, M. C. Weisskopf, T. Majeed, J.-M. Jahn, and A. Bhardwaj (2002) · 2002
Earlier work this paper cites.
Discovery of soft X-ray emission from Io, Europa, and the Io Plasma Torus
R. F. Elsner, G. Randall Gladstone, J. Hunter Waite, F. J. Crary, R. R. Howell, R. E. Johnson, P. G. Ford, A. E. Metzger, K. C. Hurley, E. D. Feigelson, and others (2002) · 2002
Earlier work this paper cites.
X-rays from Saturn : a study with XMM-Newton and Chandra over the years 2002–05
G Branduardi-Raymont, A Bhardwaj, RF Elsner, and P Rodriguez (2010) · 2002
Earlier work this paper cites.
Transient aurora on Jupiter from injections of magnetospheric electrons
B. Mauk, J. Clarke, D. Grodent, J. Waite, C. Paranicas, D. Williams (2002) · 2002
Earlier work this paper cites.
The ion environment near Europa and its role in surface energetics
C. Paranicas, J. M. Ratliff, B. H. Mauk, C. Cohen, and R. E. Johnson (2002) · 2002
Earlier work this paper cites.
Solar control on Jupiter’s equatorial X-ray emissions: 26–29 november 2003 XMM-newton observation
A. Bhardwaj, G. Branduardi-Raymont, R. F Elsner, G R. Gladstone, G. Ramsay, P. Rodriguez, R. Soria, JH Waite, and T. E Cravens (2005) · 2003
Earlier work this paper cites.
Modulation of jovian middle magnetosphere currents and auroral precipitation by solar wind-induced compressions and expansions of the magnetosphere: initial response and steady state
S.W.H. Cowley and E.J. Bunce (2003) · 2003
Earlier work this paper cites.
Jupiter’s main auroral oval observed with HST-STIS
D. Grodent, J. Clarke, J. Kim, J. Waite, S. Cowley (2003) · 2003
Earlier work this paper cites.
GEANT4—a simulation toolkit
S Agostinelli, J Allison, K. al Amako, J Apostolakis, H. Araujo, P Arce, M Asai, D. Axen, S Banerjee, and GJNI Barrand (2003) · 2003
Earlier work this paper cites.
Jupiter’s polar ionospheric flows: Theoretical interpretation
S.W.H. Cowley, E.J. Bunce, T.S. Stallard, and S. Miller (2003) · 2003
Earlier work this paper cites.
First observation of Jupiter by XMM-Newton
G. Branduardi-Raymont, R. F. Elsner, G. R. Gladstone, G. Ramsay, P. Rodriguez, R. Soria, and J. H. Waite (2004) · 2004
Earlier work this paper cites.
Simultaneous observations of jovian quasi-periodic radio emissions by the Galileo and Cassini spacecraft
G. B. Hospodarsky, W. S. Kurth, B. Cecconi, D. A. Gurnett, M. L. Kaiser, M. D. Desch, and P. Zarka (2004) · 2004
Earlier work this paper cites.
Energetic ion characteristics and neutral gas interactions in Jupiter’s magnetosphere
BH Mauk, DG Mitchell, RW McEntire, CP Paranicas, EC Roelof, DJ Williams, SM Krimigis, and A Lagg (2004) · 2004
Earlier work this paper cites.
Simultaneous Chandra X-ray, Hubble Space Telescope ultraviolet, and Ulysses radio observations of Jupiter’s aurora
R. F. Elsner, N. Lugaz, J. H. Waite Jr, T. E. Cravens, G. R. Gladstone, P. Ford, Denis Grodent, A. Bhardwaj, R. J. MacDowall, and M. D. Desch (2005) · 2005
Earlier work this paper cites.
Chandra observation of an X-ray flare at Saturn : evidence of direct solar control on Saturn ’s disk X-ray emissions
A. Bhardwaj, R. F. Elsner, J. H. Waite Jr, G. R. Gladstone, T. E. Cravens, and P. G. Ford (2005) · 2005
Earlier work this paper cites.
X-ray probes of magnetospheric interactions with Jupiter’s auroral zones, the galilean satellites, and the Io plasma torus
RF Elsner, BD Ramsey, JH Waite, P Rehak, RE Johnson, JF Cooper, and DA Swartz (2005) · 2005
Earlier work this paper cites.
X‐ray emission from the outer planets: Albedo for scattering and fluorescence of solar X-rays
T. E Cravens, J. Clark, A. Bhardwaj, R. Elsner, J. H. Waite Jr, A. N. Maurellis, G. R. Gladstone, and G. Branduardi‐Raymont (2006) · 2006
Earlier work this paper cites.
Low- to middle-latitude X-ray emission from Jupiter
A. Bhardwaj, R. F. Eisner, G. R. Gladstone, J. H. Waite, G. Branduardi-Raymont, T. E. Cravens, and P. G. Ford (2006) · 2006
Cited alongside, same era.
Ion emission spectra in the Jovian X-ray aurora
V Kharchenko, A Dalgarno, DR Schultz, and PC Stancil (2006) · 2006
Cited alongside, same era.
A study of Jupiter’s aurorae with XMM-Newton
G. Branduardi-Raymont, A. Bhardwaj, R. F. Elsner, G. R. Gladstone, G. Ramsay, P. Rodriguez, Roberto Soria, J. H. Waite, and T. E. Cravens (2007) · 2007
Cited alongside, same era.
The X-ray observatory Suzaku
K. Mitsuda, M. Bautz, H. Inoue, R. L. Kelley, K. Koyama, H. Kunieda, K. Makishima, Y. Ogawara, R. Petre, and T. Takahashi (2007) · 2007
Cited alongside, same era.
Jupiter: the planet, satellites and magnetosphere
F. Bagenal, T. E. Dowling, and W. B. McKinnon (2007) · 2007
Cited alongside, same era.
Latest results on jovian disk X-rays from XMM-Newton
G. Branduardi-Raymont, A. Bhardwaj, R. F. Elsner, G. R. Gladstone, G. Ramsay, P. Rodriguez, R. Soria, J. H. Waite Jr, and T. E. Cravens (2007) · 2007
Magnetosphere-ionosphere mapping at Jupiter: Quantifying the effects of using different internal field models
M F Vogt, E J Bunce, M G Kivelson, K K Khurana, R J Walker, A Radioti, B Bonfond, and D Grodent (2015) · 2015
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The search for a subsurface ocean in Ganymede with Hubble Space Telescope observations of its auroral ovals
J Saur, S Duling, L Roth, X Jia, D F. Strobel, P D. Feldman, U R. Christensen, K D. Retherford, M A. McGrath, and F Musacchio (2015) · 2015
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The impact of an ICME on the Jovian X-ray aurora
W R Dunn, G Branduardi-Raymont, R F Elsner, M F Vogt, L Lamy, P G Ford, A J Coates, G R Gladstone, C M Jackman, J D Nichols, and others (2016) · 2016
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Jupiter’s X-ray and EUV auroras monitored by Chandra , XMM-Newton, and Hisaki satellite
T Kimura, RP Kraft, RF Elsner, Graziella Branduardi-Raymont, GR Gladstone, C Tao, Kazuo Yoshioka, G Murakami, A Yamazaki, F Tsuchiya, and others (2016) · 2016
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Jupiter’s interior and deep atmosphere: The initial pole-to-pole passes with the Juno spacecraft
S. J Bolton, A. Adriani, V. Adumitroaie, M. Allison, J. Anderson, S. Atreya, J. Bloxham, S. Brown, J.E.P. Connerney, E. DeJong, and others (2017) · 2017
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Cited alongside, same era.
Comparisons between Jupiter’s X-ray, UV and radio emissions and in-situ solar wind measurements during 2007
W. R. Dunn, R. Gray, A. D. Wibisono, L. Lamy, C. Louis, and S. V. Badman (2020) · 2007
Cited alongside, same era.
Jupiter’s X-rays 2007 part 1: Jupiter’s X-ray emission during solar minimum
W. R. Dunn, G. Branduardi-Raymont, V. Carter-Cortez, A. Campbell, R. Elsner, J.-U. Ness, G. R. Gladstone, P. Ford, Zhonghua Yao, and P. Rodriguez (2020) · 2007
Cited alongside, same era.
Jupiter: A fundamentally different magnetospheric interaction with the solar wind
D.J. McComas and F. Bagenal (2007) · 2007
Cited alongside, same era.
Equatorial electron beams and auroral structuring at Jupiter
B. H Mauk and J. Saur (2007) · 2007
Cited alongside, same era.
Comment on Jupiter: A fundamentally different magnetospheric interaction with the solar wind? by DJ McComas and F. Bagenal
S.W.H Cowley, S. V. Badman, S.M. Imber, and S.E. Milan (2008) · 2008
Cited alongside, same era.
Spectral morphology of the X-ray emission from Jupiter’s aurorae
G. Branduardi-Raymont, R. F. Elsner, M. Galand, D. Grodent, T. E. Cravens, P. Ford, G. R. Gladstone, and J. H. Waite Jr (2008) · 2008
Cited alongside, same era.
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Chandra observations of Jupiter’s X-ray auroral emission during Juno apojove 2017
D. M. Weigt, C. M. Jackman, W. R. Dunn, G. R. Gladstone, M. F. Vogt, A. D. Wibisono, G. Branduardi-Raymont, D. Altamirano, F. Allegrini, R. W. Ebert, and others (2020) · 2017
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Juno observations of energetic charged particles over Jupiter’s polar regions: Analysis of monodirectional and bidirectional electron beams
B. H. Mauk, D. K. Haggerty, C. Paranicas, G. Clark, P. Kollmann, A. M. Rymer, D. G. Mitchell, S. J. Bolton, S. M. Levin, A. Adriani, and others (2017) · 2017
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The Juno magnetic field investigation
J.E.P Connerney, M. Benn, J. B. Bjarno, T. Denver, J. Espley, J. L. Jorgensen, P. S. Jorgensen, P. Lawton, A. Malinnikova, J.M. Merayo, and others (2017) · 2017
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The Juno waves investigation
W.S. Kurth, G.B. Hospodarsky, D.L. Kirchner, B.T. Mokrzycki, T.F. Averkamp, W.T. Robison, C.W. Piker, M. Sampl, and P. Zarka (2017) · 2017
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The ultraviolet spectrograph on NASA’s Juno mission
G. R. Gladstone, S. C. Persyn, J. S. Eterno, B. C. Walther, D. C. Slater, M. W. Davis, M. H. Versteeg, K. B. Persson, M. K. Young, and G. J. Dirks (2017) · 2017
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Discrete and broadband electron acceleration in Jupiter’s powerful aurora
B.H. Mauk, D.K. Haggerty, C. Paranicas, G. Clark, P. Kollmann, A.M. Rymer, S.J. Bolton, S.M. Levin, A. Adriani, F. Allegrini, F. Bagenal (2017) · 2017
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The independent pulsations of Jupiter’s northern and southern X-ray auroras
W. R. Dunn, G. Branduardi-Raymont, L. C. Ray, C. M. Jackman, R. P. Kraft, R. F. Elsner, I. J. Rae, Zhonghua Yao, M. F. Vogt, and G. H. Jones (2017) · 2017
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Jupiter’s aurora observed with HST during Juno orbits 3 to 7
D. Grodent, B. Bonfond, Z-H. Yao, J. C. Gérard, A. Radioti, M. Dumont, … & P. Valek (2018) · 2018
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A more viscous-like solar wind interaction with all the giant planets
A Masters (2018) · 2018
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Evidence for auroral emissions from Callisto’s footprint in HST UV images
D. Bhattacharyya, J. T. Clarke, J. Montgomery, B. Bonfond, J.-C. Gérard, D. Grodent (2018) · 2018
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In situ observations connected to the Io footprint tail aurora
J.R. Szalay, B. Bonfond, F. Allegrini, F. Bagenal, S. Bolton, G. Clark, J.E.P. Connerney, R.W. Ebert, R.E. Ergun, G.R. Gladstone, D. Grodent (2018) · 2018
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Jovian auroral ion precipitation: Field-aligned currents and ultraviolet emissions
SJ Houston, N Ozak, J Young, TE Cravens, and DR Schultz (2018) · 2018
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Assessing quasi-periodicities in Jovian X-ray emissions: Techniques and heritage survey
CM Jackman, C Knigge, D Altamirano, R Gladstone, W Dunn, R Elsner, R Kraft, G Branduardi-Raymont, and P Ford (2018) · 2018
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Investigating solar wind-driven electric field influence on long-term dynamics of Jovian synchrotron radiation
S. Han, G. Murakami, H. Kita, F. Tsuchiya, C. Tao, H. Misawa, A. Yamazaki, and M. Nakamura (2018) · 2018
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The complicated evolution of the ACIS contamination layer over the mission life of the Chandra X-ray observatory
P P. Plucinsky, A Bogdan, H L. Marshall, and N W. Tice (2018) · 2018
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The SMILE soft X-ray imager (SXI) CCD design and development
MR Soman, DJ Hall, AD Holland, R Burgon, T Buggey, J Skottfelt, S Sembay, P Drumm, J Thornhill, A Read, and others (2018) · 2018
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An X-ray fluorescence spectrometer for the Europa lander
R Kraft, L W. Beegle, E Bulbul, G Germain, R P. Hodyss, S Nulsen, G Tremblay, and S Vance (2018) · 2018
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X-ray fluorescence spectroscopy on the Europa lander: Determining the elemental composition of the surface and uncovering indicators of habitability
G. R. Tremblay, R. P. Kraft, E. Bulbul, S. Nulsen, G. Germain, L. Beegle, R. Hodyss, and S. Vance (2018) · 2018
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SMILE definition study report, European Space Agency, ESA/SCI, 1
G. Branduardi-Raymont, C. Wang, C.P. Escoubet, M. Adamovic, D. Agnolon, M. Berthomier, J.A. Carter, W. Chen, L. Colangeli, M. Collier, H.K. Connor, L. Dai, A. Dimmock, O. Djazovski, E. Donovan, J.P. Eastwood, G. Enno, F. Giannini, L. Huang, D. Kataria, K. Kuntz, H. Laakso, J. Li, L. Li, T. Lui, J. Loicq, A. Masson, J. Manuel, A. Parmar, T. Piekutowski, A.M. Read, A. Samsonov, S. Sembay, W. Raab, C. Ruciman, J.K. Shi, D.G. Sibeck, E.L. Spanswick, T. Sun, K. Symonds, J. Tong, B. Walsh, F. Wei, D. Zhao, J. Zheng, X. Zhu, Z. Zhu (2018) · 2018
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Suzaku observation of Jupiter’s X-rays around solar maximum
M. Numazawa, Y. Ezoe, K. Ishikawa, T. Ohashi, Y. Miyoshi, T. Kimura, Y. Uchiyama, D. Shiota, and G. Branduardi-Raymont (2019) · 2019
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Juno‐UVS observation of the Io footprint during solar eclipse
V. Hue, T.K. Greathouse, B. Bonfond, J. Saur, G.R. Gladstone, L. Roth, M.W. Davis, J.C. Gérard, D.C. Grodent, J.A. Kammer, J.R. Szalay (2019) · 2019
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Birkeland currents in Jupiter’s magnetosphere observed by the polar-orbiting Juno spacecraft
S Kotsiaros, J EP Connerney, G Clark, F Allegrini, R G Gladstone, W S Kurth, B H Mauk, J Saur, E J Bunce, D J Gershman, and others (2019) · 2019
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On the relation between Jovian aurorae and the loading/unloading of the magnetic flux: Simultaneous measurements from Juno , Hubble Space Telescope, and Hisaki
Z. H. Yao, D Grodent, W. S. Kurth, G Clark, B. H. Mauk, T Kimura, B Bonfond, S.-Y. Ye, A. T. Lui, and A Radioti (2019) · 2019
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Jupiter’s dark polar region as observed by the Hubble Space Telescope during the Juno approach phase
B. G. Swithenbank-Harris, J. D. Nichols, and E. J. Bunce (2019) · 2019
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Lynx X-ray observatory: an overview
J A. Gaskin, D Swartz, A A. Vikhlinin, F Özel, K EE Gelmis, J W. Arenberg, S R. Bandler, M W. Bautz, M M. Civitani, and A Dominguez (2019) · 2019
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X-ray emission from Jupiter’s Galilean moons: A tool for determining their surface composition and particle environment
S. Nulsen, R. Kraft, G. Germain, W. Dunn, G. Tremblay, L. Beegle, G. Branduardi-Raymont, E. Bulbul, R. Elsner, and R. Hodyss (2020) · 2020
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Temporal and spectral studies by XMM-Newton of Jupiter’s X-ray auroras during a compression event
A. D. Wibisono, G. Branduardi-Raymont, W. R. Dunn, A. J. Coates, D. M. Weigt, C. M. Jackman, Z. H. Yao, C. Tao, F. Allegrini, and D. Grodent (2020) · 2020
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Energetic particles and acceleration regions over Jupiter’s polar cap and main aurora: A broad overview
B.H. Mauk, G. Clark, G.R. Gladstone, S. Kotsiaros, A. Adriani, F. Allegrini, F. Bagenal, S.J. Bolton, B. Bonfond, J.E. Connerney, R.W. Ebert (2020) · 2020
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Reconnection-and dipolarization-driven auroral dawn storms and injections
Z. H. Yao, B Bonfond, G. Clark, D Grodent, W. R. Dunn, M. F. Vogt, R. L. Guo, B. H. Mauk, J. E. P. Connerney, and S. M. Levin (2020) · 2020
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Jovian auroral ion precipitation: X-ray production from oxygen and sulfur precipitation
SJ Houston, TE Cravens, DR Schultz, H Gharibnejad, WR Dunn, DK Haggerty, AM Rymer, BH Mauk, and N Ozak (2020) · 2020
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Heavy ion charge states in Jupiter’s polar magnetosphere inferred from auroral megavolt electric potentials
G. Clark, B. H. Mauk, P. Kollmann, C. Paranicas, F. Bagenal, R. C. Allen, S. Bingham, S. Bolton, I. Cohen, R. W. Ebert, W. Dunn, D. Haggerty, S. J. Houston, C. M. Jackman, E. Roussos, A. Rymer, and J. H. Westlake (2020) · 2020
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The AEPEX mission: Imaging energetic particle precipitation in the atmosphere through its bremsstrahlung X-ray signatures
R A. Marshall, W Xu, T Woods, C Cully, A Jaynes, C Randall, D Baker, M McCarthy, H E. Spence, and G Berland (2020) · 2020
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W. Dunn, G. R. Gladstone, Z. Yao, D. Weigt, R. Kraft, G. Branduardi-Raymont, A. Wibisono, S. Kotsiaros, C. Jackman (2021) Joining Juno to Explore Jupiter’s X-ray Emissions, CXC News Issue 27 https://cxc.harvard.edu/newsletters/news_27/article1.htmlCited20Oct2021
2021
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Suzaku observations of jovian diffuse hard X-ray emission
M. Numazawa, Y. Ezoe, T. Ohashi, K. Ishikawa, Y. Miyoshi, D. Shiota, Y. Uchiyama, T. Kimura, and G. Branduardi-Raymont (2021) · 2021
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Jupiter’s X-ray aurora during UV dawn storms and injections as observed by XMM-Newton, Hubble, and Hisaki
A. D. Wibisono, G. Branduardi-Raymont, W. R. Dunn, T. Kimura, A. J. Coates, D. Grodent, Z. H. Yao, H. Kita, P. Rodriguez, and G. R. Gladstone (2021) · 2021
Later among the works it cites.
Revealing the source of Jupiter’s X-ray auroral flares
Z. Yao, W. R. Dunn, E. E. Woodfield, G. Clark, B. H. Mauk, R. W. Ebert, D. Grodent, B. Bonfond, D. Pan, and I. J. Rae (2021) · 2021
Later among the works it cites.
Jupiter’s ion radiation belts inward of Europa’s orbit
P. Kollmann, G. Clark, C. Paranicas, B. Mauk, E. Roussos, Q. Nénon, H. B. Garrett, A. Sicard, D. Haggerty, and A. Rymer (2021) · 2021
Later among the works it cites.
Searching for Saturn ’s X-rays during a rare Jupiter magnetotail crossing using Chandra
D. M. Weigt, W. R. Dunn, C. M. Jackman, R. Kraft, G. Branduardi-Raymont, J. D. Nichols, A. D. Wibisono, M. F. Vogt, and G. R. Gladstone (2021) · 2021
Later among the works it cites.
Characteristics of Jupiter’s X-ray auroral hot spot emissions using Chandra
D M Weigt, C M. Jackman, M F. Vogt, H Manners, W R. Dunn, G. R. Gladstone, R Kraft, G Branduardi-Raymont, C. K. Louis, and S. C. McEntee (2021) · 2021
Later among the works it cites.
Revealing the source of Jupiter’s X-ray auroral flares
Z-H Yao, W R. Dunn, E E. Woodfield, G Clark, B H. Mauk, R W. Ebert, D Grodent, B Bonfond, D Pan, I. J Rae et al. (2021) · 2021
Later among the works it cites.
How Jupiter’s unusual magnetospheric topology structures its aurora
B Zhang, P A. Delamere, Z-H Yao, B Bonfond, D. Lin, K A. Sorathia, O J. Brambles, W Lotko, J S. Garretson, and V G. Merkin (2021) · 2021
Later among the works it cites.
Magnetic reconnection near the planet as a possible driver of Jupiter’s mysterious polar auroras
A Masters, W. R. Dunn, T. S. Stallard, H Manners, and J. Stawarz (2021) · 2021
Later among the works it cites.
Two years of observations of the Io plasma torus by Juno radio occultations: Results from perijoves 1 to 15
P H. Phipps, P Withers, D R. Buccino, Y-M Yang, and M Parisi (2021) · 2021
Later among the works it cites.
Observation and origin of non-thermal hard x-rays from Jupiter
K Mori, C Hailey, G Bridges, S Mandel, A Garvin, B Grefenstette, W Dunn, B J Hord, G Branduardi-Raymont, J Clarke, et al (2022) · 2022
Closest in time.
Jupiter’s X-ray and UV Dark Polar Region
W. R. Dunn, D. M. Weigt, D. Grodent, Z. H. Yao, D. May, K. Feigelman, B. Sipos, D. Fleming, S. McEntee, B. Bonfond, G. R. Gladstone, R. Johnson, C. M. Jackman, R. L. Guo, G. Branduardi-Raymont, A. D. Wibisono, R. P. Kraft, J. D. Nichols, L. C. Ray (2022) · 2022
Closest in time.
Composition dependence of bremsstrahlung background in electron-probe X-ray microanalysis
A A. Markowicz and R E. Van Grieken (1984) · 2051
Closest in time.