Scott J. Bolton
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American physicist
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Scott J. Boltonphysics Degrees
Physics
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#1526
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Planetary Science
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World Rank
#134
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Physics
Scott J. Bolton's Degrees
- PhD Physics University of California, Berkeley
- Masters Physics University of California, Berkeley
- Bachelors Physics University of California, Berkeley
Why Is Scott J. Bolton Influential?
(Suggest an Edit or Addition)According to Wikipedia, Scott J. Bolton is an American theoretical and experimental space physicist. He is an associate vice president of the Southwest Research Institute Space Science and Engineering Division. His research area is planetary sciences with a focus on the giant planets and the origin of the solar system. Previously serving as a member of the Galileo and Cassini–Huygens missions, Bolton became the Principal Investigator of Juno, a New Frontiers program mission to Jupiter which began primary science in 2016.
Scott J. Bolton's Published Works
Number of citations in a given year to any of this author's works
Total number of citations to an author for the works they published in a given year. This highlights publication of the most important work(s) by the author
Published Works
- Cassini Plasma Spectrometer Investigation (1996) (471)
- Cassini finds molecular hydrogen in the Enceladus plume: Evidence for hydrothermal processes (2017) (339)
- Composition and Dynamics of Plasma in Saturn's Magnetosphere (2005) (289)
- The Juno Mission (1989) (228)
- A New Model of Jupiter's Magnetic Field From Juno's First Nine Orbits (2018) (221)
- Jupiter’s interior and deep atmosphere: The initial pole-to-pole passes with the Juno spacecraft (2017) (210)
- Plasma Observations at Io with the Galileo Spacecraft (1996) (199)
- Comparing Jupiter interior structure models to Juno gravity measurements and the role of a dilute core (2017) (175)
- Dynamics of Saturn's Magnetosphere from MIMI During Cassini's Orbital Insertion (2005) (173)
- Jupiter’s atmospheric jet streams extend thousands of kilometres deep (2018) (170)
- Magnetospheric Science Objectives of the Juno Mission (2017) (166)
- Evidence for a magnetosphere at Ganymede from plasma-wave observations by the Galileo spacecraft (1996) (159)
- Control of Jupiter's radio emission and aurorae by the solar wind (2002) (153)
- Measurement of Jupiter’s asymmetric gravity field (2018) (142)
- A suppression of differential rotation in Jupiter’s deep interior (2018) (139)
- Galileo Plasma Wave Observations in the Io Plasma Torus and Near Io (1996) (139)
- Galileo evidence for rapid interchange transport in the Io torus (1997) (118)
- Jupiter’s magnetosphere and aurorae observed by the Juno spacecraft during its first polar orbits (2017) (108)
- Ultra-relativistic electrons in Jupiter's radiation belts (2002) (107)
- Electron sources in Saturn's magnetosphere (2007) (95)
- Fine structure of Langmuir waves produced by a solar electron event (1993) (95)
- The distribution of ammonia on Jupiter from a preliminary inversion of Juno microwave radiometer data (2017) (88)
- Juno observations of energetic charged particles over Jupiter's polar regions: Analysis of monodirectional and bidirectional electron beams (2017) (82)
- Clusters of cyclones encircling Jupiter’s poles (2018) (80)
- Initial interpretation of Titan plasma interaction as observed by the Cassini plasma spectrometer: Comparisons with Voyager 1 (2006) (77)
- Discrete and broadband electron acceleration in Jupiter’s powerful aurora (2017) (74)
- The water abundance in Jupiter’s equatorial zone (2020) (74)
- Enhanced whistler‐mode emissions: Signatures of interchange motion in the Io torus (1997) (73)
- Correlation studies between solar wind parameters and the decimetric radio emission from Jupiter (1989) (69)
- Jupiter gravity field estimated from the first two Juno orbits (2017) (66)
- MWR: Microwave Radiometer for the Juno Mission to Jupiter (2017) (64)
- Response of Jupiter's auroras to conditions in the interplanetary medium as measured by the Hubble Space Telescope and Juno (2017) (64)
- The global plasma environment of Titan as observed by Cassini Plasma Spectrometer during the first two close encounters with Titan (2005) (64)
- Preliminary interpretation of Titan plasma interaction as observed by the Cassini Plasma Spectrometer: Comparisons with Voyager 1 (2004) (64)
- The plasma wave environment of Europa (2001) (63)
- Lightning and Plasma Wave Observations from the Galileo Flyby of Venus (1991) (62)
- Electron beams and loss cones in the auroral regions of Jupiter (2017) (61)
- A complex dynamo inferred from the hemispheric dichotomy of Jupiter’s magnetic field (2018) (60)
- Outflow of hydrogen ions from Ganymede (1997) (59)
- Microwave remote sensing of Jupiter's atmosphere from an orbiting spacecraft (2005) (57)
- Imaging Jupiter's Aurora at Visible Wavelengths (1998) (54)
- A revised model of Jupiter's inner electron belts: Updating the Divine radiation model (2005) (54)
- Morphology of the UV aurorae Jupiter during Juno's first perijove observations (2017) (52)
- Magnetospheric and Plasma Science with Cassini-Huygens (2002) (51)
- Prevalent lightning sferics at 600 megahertz near Jupiter’s poles (2018) (48)
- Junocam: Juno’s Outreach Camera (2017) (47)
- LAPLACE: A mission to Europa and the Jupiter System for ESA’s Cosmic Vision Programme (2009) (46)
- Diverse Electron and Ion Acceleration Characteristics Observed Over Jupiter's Main Aurora (2018) (45)
- A nebula of gases from Io surrounding Jupiter (2002) (43)
- Energetic particle signatures of magnetic field‐aligned potentials over Jupiter's polar regions (2017) (41)
- Fine structure of Langmuir waves observed upstream of the bow shock at Venus (1994) (41)
- Outburst of Jupiter's synchrotron radiation after the impact of comet Shoemaker-Levy 9. (1995) (41)
- Precipitating Electron Energy Flux and Characteristic Energies in Jupiter's Main Auroral Region as Measured by Juno/JEDI (2018) (40)
- Juno observations of spot structures and a split tail in Io-induced aurorae on Jupiter (2018) (39)
- In Situ Observations Connected to the Io Footprint Tail Aurora (2018) (39)
- Time variation of Jupiter’s internal magnetic field consistent with zonal wind advection (2019) (39)
- Energetic Particles and Acceleration Regions Over Jupiter's Polar Cap and Main Aurora: A Broad Overview (2020) (38)
- Discussing the processes constraining the Jovian synchrotron radio emission's features (2008) (38)
- Evidence for short-term variability of Jupiter's decimetric emission from VLA observations (2009) (37)
- Energy Flux and Characteristic Energy of Electrons Over Jupiter's Main Auroral Emission (2019) (37)
- Comparison of the Deep Atmospheric Dynamics of Jupiter and Saturn in Light of the Juno and Cassini Gravity Measurements (2019) (37)
- Plasma densities in the vicinity of Callisto from Galileo plasma wave observations (2000) (37)
- Alfvénic Fluctuations Associated With Jupiter's Auroral Emissions (2019) (37)
- Birkeland currents in Jupiter’s magnetosphere observed by the polar-orbiting Juno spacecraft (2019) (36)
- Galileo plasma wave observations near Europa (1998) (36)
- Jupiter's Gravity Field Halfway Through the Juno Mission (2020) (35)
- Jupiter's inner radiation belts (2004) (35)
- One year variations in the near Earth solar wind ion density and bulk flow velocity (1990) (35)
- Generation of the Jovian hectometric radiation: First lessons from Juno (2017) (34)
- Accelerated flows at Jupiter's magnetopause: Evidence for magnetic reconnection along the dawn flank (2017) (34)
- Low‐energy electron measurements at Ganymede with the Galileo spacecraft: Probes of the magnetic topology (1997) (33)
- A new view of Jupiter's auroral radio spectrum (2017) (33)
- Spatial Distribution and Properties of 0.1–100 keV Electrons in Jupiter's Polar Auroral Region (2017) (33)
- Long-term tracking of circumpolar cyclones on Jupiter from polar observations with JunoCam (2020) (32)
- Plasma measurements in the Jovian polar region with Juno/JADE (2017) (32)
- Modeling the electron and proton radiation belts of Saturn (2003) (32)
- Electron densities near Io from Galileo plasma wave observations (2001) (31)
- Ganymede: A new radio source (1997) (31)
- Intervals of Intense Energetic Electron Beams Over Jupiter's Poles (2018) (31)
- Identification of Saturn's magnetospheric regions and associated plasma processes: Synopsis of Cassini observations during orbit insertion (2008) (30)
- Method to Derive Ion Properties From Juno JADE Including Abundance Estimates for O+ and S2+ (2020) (29)
- Infrared observations of Jovian aurora from Juno's first orbits: Main oval and satellite footprints (2017) (28)
- The first close‐up images of Jupiter's polar regions: Results from the Juno mission JunoCam instrument (2017) (27)
- Plasma waves in Jupiter's high‐latitude regions: Observations from the Juno spacecraft (2017) (27)
- Implications of the ammonia distribution on Jupiter from 1 to 100 bars as measured by the Juno microwave radiometer (2017) (27)
- Assessment of mechanisms for Jovian synchrotron variability associated with comet SL‐9 (1995) (26)
- The Juno Gravity Science Instrument (2017) (26)
- Wave‐Particle Interactions Associated With Io's Auroral Footprint: Evidence of Alfvén, Ion Cyclotron, and Whistler Modes (2020) (26)
- A heavy ion and proton radiation belt inside of Jupiter's rings (2017) (25)
- ROSAT Observations of X-ray Emissions from Jupiter During the Impact of Comet Shoemaker-Levy 9 (1995) (25)
- Observations of MeV electrons in Jupiter's innermost radiation belts and polar regions by the Juno radiation monitoring investigation: Perijoves 1 and 3 (2017) (25)
- The Juno Radiation Monitoring (RM) Investigation (2017) (25)
- Io‐Jupiter decametric arcs observed by Juno/Waves compared to ExPRES simulations (2017) (23)
- Plasma environment at the dawn flank of Jupiter's magnetosphere: Juno arrives at Jupiter (2017) (23)
- Survey of Ion Properties in Jupiter's Plasma Sheet: Juno JADE‐I Observations (2020) (23)
- Modeling Jupiter's synchrotron radiation (2001) (23)
- Jovian bow shock and magnetopause encounters by the Juno spacecraft (2016) (23)
- Systematic Observations and Correlation Studies of Variations in the Synchrotron Radio Emission from Jupiter (1989) (22)
- The effect of differential rotation on Jupiter's low-degree even gravity moments (2017) (22)
- Changes in Jupiter's 13‐cm synchrotron radio emission following the impact of comet Shoemaker‐Levy‐9 (1995) (22)
- Contemporaneous Observations of Jovian Energetic Auroral Electrons and Ultraviolet Emissions by the Juno Spacecraft (2019) (22)
- In-flight Characterization and Calibration of the Juno-ultraviolet Spectrograph (Juno-UVS) (2018) (21)
- Juno‐UVS approach observations of Jupiter's auroras (2017) (21)
- Preliminary JIRAM results from Juno polar observations: 2. Analysis of the Jupiter southern H3+ emissions and comparison with the north aurora (2017) (21)
- A determination of the source of Jovian hectometric radiation via occultation by Ganymede (1997) (21)
- On the Relation Between Jovian Aurorae and the Loading/Unloading of the Magnetic Flux: Simultaneous Measurements From Juno, Hubble Space Telescope, and Hisaki (2019) (21)
- Discovery of rapid whistlers close to Jupiter implying lightning rates similar to those on Earth (2018) (21)
- Storms and the Depletion of Ammonia in Jupiter: I. Microphysics of “Mushballs” (2020) (21)
- Observation and interpretation of energetic ion conics in Jupiter's polar magnetosphere (2017) (20)
- First Estimate of Wind Fields in the Jupiter Polar Regions From JIRAM‐Juno Images (2018) (20)
- Investigating the origins of the Jovian decimetric emission's variability (2008) (20)
- Alfvénic Acceleration Sustains Ganymede's Footprint Tail Aurora (2020) (20)
- Two‐Year Observations of the Jupiter Polar Regions by JIRAM on Board Juno (2019) (19)
- Understanding the Origin of Jupiter's Diffuse Aurora Using Juno's First Perijove Observations (2017) (19)
- The Acceleration of Electrons to High Energies Over the Jovian Polar Cap via Whistler Mode Wave‐Particle Interactions (2018) (19)
- Multispectral observations of Jupiter's aurora (2008) (19)
- Preliminary results on the composition of Jupiter's troposphere in hot spot regions from the JIRAM/Juno instrument (2017) (19)
- Juno's first glimpse of Jupiter's complexity (2017) (19)
- Small lightning flashes from shallow electrical storms on Jupiter (2020) (19)
- Magnetotail Reconnection at Jupiter: A Survey of Juno Magnetic Field Observations (2020) (18)
- Observation of Electron Conics by Juno: Implications for Radio Generation and Acceleration Processes (2018) (18)
- Whistler Mode Waves Associated With Broadband Auroral Electron Precipitation at Jupiter (2018) (18)
- Investigation of Mass‐/Charge‐Dependent Escape of Energetic Ions Across the Magnetopauses of Earth and Jupiter (2019) (18)
- Preliminary JIRAM results from Juno polar observations: 1. Methodology and analysis applied to the Jovian northern polar region (2017) (18)
- A New Model of Jupiter's Magnetic Field at the Completion of Juno's Prime Mission (2021) (18)
- Jupiter’s Magnetosphere: Plasma Sources and Transport (2015) (18)
- Proton Acceleration by Io's Alfvénic Interaction (2020) (17)
- Juno‐UVS Observation of the Io Footprint During Solar Eclipse (2019) (17)
- Revealing the source of Jupiter’s x-ray auroral flares (2021) (17)
- Divine‐Garrett Model and Jovian synchrotron emission (2001) (17)
- Observations of Jupiter's synchrotron radiation at 18 cm during the comet Shoemaker‐Levy/9 impacts (1995) (17)
- Juno/JEDI observations of 0.01 to >10 MeV energetic ions in the Jovian auroral regions: Anticipating a source for polar X‐ray emission (2017) (17)
- Juno observations of large‐scale compressions of Jupiter's dawnside magnetopause (2017) (17)
- A New Framework to Explain Changes in Io's Footprint Tail Electron Fluxes (2020) (17)
- Preliminary JIRAM results from Juno polar observations: 3. Evidence of diffuse methane presence in the Jupiter auroral regions (2017) (17)
- Reconnection‐ and Dipolarization‐Driven Auroral Dawn Storms and Injections (2020) (17)
- Absence of a magnetic-field signature in plasma-wave observations at Callisto (1997) (16)
- Kronos: exploring the depths of Saturn with probes and remote sensing through an international mission (2009) (16)
- The Rich Dynamics of Jupiter’s Great Red Spot from JunoCam: Juno Images (2018) (16)
- Pitch Angle Scattering of Upgoing Electron Beams in Jupiter's Polar Regions by Whistler Mode Waves (2018) (16)
- Are Dawn Storms Jupiter's Auroral Substorms? (2020) (16)
- Jovian High‐Latitude Ionospheric Ions: Juno In Situ Observations (2019) (15)
- Comparing Electron Energetics and UV Brightness in Jupiter's Northern Polar Region During Juno Perijove 5 (2019) (15)
- Storms and the Depletion of Ammonia in Jupiter: II. Explaining the Juno Observations (2020) (15)
- Revelations on Jupiter's formation, evolution and interior: Challenges from Juno results (2022) (15)
- Characterization of the white ovals on Jupiter's southern hemisphere using the first data by the Juno/JIRAM instrument (2017) (15)
- JUPITER'S MAGNETIC FIELD AS REVEALED BY THE SYNCHROTRON RADIATION BELTS. I. COMPARISON OF A 3-D RECONSTRUCTION WITH MODELS OF THE FIELD (1999) (15)
- Concurrent ultraviolet and infrared observations of the north Jovian aurora during Juno's first perijove (2018) (14)
- Hot flow anomaly observed at Jupiter's bow shock (2017) (14)
- Jupiter’s interior and deep atmosphere: the first pole-to-pole pass with the Juno spacecraft (2017) (14)
- Determining the Depth of Jupiter’s Great Red Spot with Juno: A Slepian Approach (2019) (14)
- Jovian Radio Emissions: An Early Overview of Galileo Observations (1997) (14)
- Multiple‐wavelength sensing of Jupiter during the Juno mission's first perijove passage (2017) (14)
- Synchrotron emission images from three-dimensional modeling of the Jovian electron radiation belts (2001) (14)
- Energetic Proton Acceleration Associated With Io's Footprint Tail (2020) (14)
- JUPITER'S MAGNETIC FIELD AS REVEALED BY THE SYNCHROTRON RADIATION BELTS. II. CHANGE OF THE 2-D BRIGHTNESS DISTRIBUTION WITH DE (1999) (14)
- Io's interaction with the Jovian magnetosphere (1997) (13)
- Heavy Ion Charge States in Jupiter's Polar Magnetosphere Inferred From Auroral Megavolt Electric Potentials (2020) (13)
- Infrared observations of Io from Juno (2020) (13)
- Jovian Injections Observed at High Latitude (2019) (13)
- Serendipitous infrared observations of Europa by Juno/JIRAM (2019) (13)
- Direction‐finding measurements of Jovian low‐frequency radio components by Juno near Perijove 1 (2017) (12)
- Bar Code Events in the Juno‐UVS Data: Signature ∼10 MeV Electron Microbursts at Jupiter (2018) (12)
- The Juno Mission (2017) (12)
- Latitudinal beaming of Jovian decametric radio emissions as viewed from Juno and the Nançay Decameter Array (2017) (12)
- Long-term dynamics of the inner Jovian electron radiation belts (2004) (12)
- A solution of Jupiter’s gravitational field from Juno data with the orbit14 software (2019) (12)
- Jupiter's Temperate Belt/Zone Contrasts Revealed at Depth by Juno Microwave Observations (2021) (12)
- The Time Variability of Jupiter's Synchrotron Radiation. (1991) (12)
- The Cassini–Huygens flyby of Jupiter (2004) (12)
- Io's Effect on Energetic Charged Particles as Seen in Juno Data (2019) (12)
- Cassini-Jupiter microwave observing campaign: DSN and GAVRT observations of Jovian synchrotron radio emission (2001) (12)
- Survey of Jupiter's Dawn Magnetosheath Using Juno (2019) (12)
- VLA observations at 6.2 cm of the response of Jupiter's electron belt to the July 2009 event (2011) (11)
- First Report of Electron Measurements During a Europa Footprint Tail Crossing by Juno (2020) (11)
- Energetic Charged Particle Observations During Juno's Close Flyby of Ganymede (2022) (11)
- Multifrequency analysis of the Jovian electron-belt radiation during the Cassini flyby of Jupiter (2014) (11)
- Variability of Jupiter's IR H3+ aurorae during Juno approach (2017) (11)
- Juno Energetic Neutral Atom (ENA) Remote Measurements of Magnetospheric Injection Dynamics in Jupiter's Io Torus Regions (2020) (11)
- Juno's Close Encounter With Ganymede—An Overview (2022) (11)
- Plasma Observations During the 7 June 2021 Ganymede Flyby From the Jovian Auroral Distributions Experiment (JADE) on Juno (2022) (10)
- Jupiter Lightning‐Induced Whistler and Sferic Events With Waves and MWR During Juno Perijoves (2018) (10)
- The High‐Latitude Extension of Jupiter's Io Torus: Electron Densities Measured by Juno Waves (2021) (10)
- Survey of Juno Observations in Jupiter's Plasma Disk: Density (2021) (10)
- Quantification of Diffuse Auroral Electron Precipitation Driven by Whistler Mode Waves at Jupiter (2021) (10)
- Radiation near Jupiter detected by Juno/JEDI during PJ1 and PJ3 (2017) (10)
- The Generation of Upward‐Propagating Whistler Mode Waves by Electron Beams in the Jovian Polar Regions (2020) (10)
- UVS Observations of Ganymede's Aurora During Juno Orbits 34 and 35 (2022) (9)
- Jupiter's Equatorial Plumes and Hot Spots: Spectral Mapping from Gemini/TEXES and Juno/MWR (2020) (9)
- On the Spatial Distribution of Minor Species in Jupiter's Troposphere as Inferred From Juno JIRAM Data (2020) (9)
- Submillimetre Wave Instrument for EJSM (2009) (9)
- H3+ characteristics in the Jupiter atmosphere as observed at limb with Juno/JIRAM (2019) (9)
- Microwave observations reveal the deep extent and structure of Jupiter’s atmospheric vortices (2021) (9)
- Electron Partial Density and Temperature Over Jupiter's Main Auroral Emission Using Juno Observations (2021) (9)
- First look at Jupiter's synchrotron emission from Juno's perspective (2017) (9)
- Proton Outflow Associated With Jupiter's Auroral Processes (2020) (9)
- Jupiter's inhomogeneous envelope (2022) (8)
- Statistical study of latitudinal beaming of Jupiter's decametric radio emissions using Juno (2017) (8)
- Morphology of the Auroral Tail of Io, Europa, and Ganymede From JIRAM L‐Band Imager (2021) (8)
- Analysis of IR-bright regions of Jupiter in JIRAM-Juno data: Methods and validation of algorithms (2017) (8)
- Juno Plasma Wave Observations at Ganymede (2022) (8)
- Energy Spectra Near Ganymede From Juno Data (2021) (8)
- Possible Transient Luminous Events Observed in Jupiter's Upper Atmosphere (2020) (8)
- The depth of Jupiter’s Great Red Spot constrained by Juno gravity overflights (2021) (8)
- Oscillations and Stability of the Jupiter Polar Cyclones (2021) (7)
- Infrared observations of Ganymede from Juno/JIRAM (2020) (7)
- The global plasma environment of Io as inferred from the Galileo plasma wave observations (1997) (7)
- Jupiter's Synchrotron Radiation: Observed Variations Before, During and After the Impacts of Comet SL9 (1996) (7)
- Electron butterfly distributions at particular magnetic latitudes observed during Juno's perijove pass (2017) (7)
- Atmospheric loss of energetic electrons in the Jovian synchrotron zone (2002) (7)
- Titan in the Cassini—Huygens Extended Mission (2009) (7)
- Probing Jovian Broadband Kilometric Radio Sources Tied to the Ultraviolet Main Auroral Oval With Juno (2019) (7)
- Angular Dependence and Spatial Distribution of Jupiter's Centimeter‐Wave Thermal Emission From Juno's Microwave Radiometer (2020) (6)
- Juno Constraints on the Formation of Jupiter's Magnetospheric Cushion Region (2018) (6)
- Jupiter's Low‐Altitude Auroral Zones: Fields, Particles, Plasma Waves, and Density Depletions (2022) (6)
- A mascon approach to estimating the depth of Jupiter’s Great Red Spot with Juno gravity measurements (2020) (6)
- Turbulence Power Spectra in Regions Surrounding Jupiter's South Polar Cyclones From Juno/JIRAM (2020) (6)
- Evidence for Magnetic Reconnection at Ganymede's Upstream Magnetopause During the PJ34 Juno Flyby (2022) (6)
- Constraints on the Latitudinal Profile of Jupiter's Deep Jets (2021) (6)
- Cassini/Huygens flyby of the Jovian system (2004) (6)
- Juno Magnetometer Observations at Ganymede: Comparisons With a Global Hybrid Simulation and Indications of Magnetopause Reconnection (2022) (6)
- Observations of interplanetary dust by the Juno magnetometer investigation (2017) (5)
- Low‐Latitude Whistler‐Mode and Higher‐Latitude Z‐Mode Emission at Jupiter Observed by Juno (2021) (5)
- Juno In Situ Observations Above the Jovian Equatorial Ionosphere (2020) (5)
- The Juno New Frontiers Jupiter Polar Orbiter Mission (2004) (5)
- MULTIPROBE EXPLORATION OF THE GIANT PLANETS – SHALLOW PROBES (2006) (5)
- Plasma Sheet Boundary Layer in Jupiter's Magnetodisk as Observed by Juno (2020) (5)
- A Survey of Small‐Scale Waves and Wave‐Like Phenomena in Jupiter's Atmosphere Detected by JunoCam (2020) (5)
- Water‐Group Pickup Ions From Europa‐Genic Neutrals Orbiting Jupiter (2022) (5)
- A Preliminary Study of Magnetosphere‐Ionosphere‐Thermosphere Coupling at Jupiter: Juno Multi‐Instrument Measurements and Modeling Tools (2021) (5)
- Alternating North‐South Brightness Ratio of Ganymede's Auroral Ovals: Hubble Space Telescope Observations Around the Juno PJ34 Flyby (2022) (4)
- On the Relation Between Auroral Morphologies and Compression Conditions of Jupiter's Magnetopause: Observations From Juno and the Hubble Space Telescope (2022) (4)
- Jupiter's Temperature Structure: A Reassessment of the Voyager Radio Occultation Measurements (2022) (4)
- Ganymede's Ionosphere Observed by a Dual‐Frequency Radio Occultation With Juno (2022) (4)
- Storms and the distribution of ammonia in Jupiter's atmosphere (2019) (4)
- Jupiter: Atmospheric Sounding and Sensing of the Interior (JASSI) (2001) (4)
- Theory of Figures to the Seventh Order and the Interiors of Jupiter and Saturn (2021) (4)
- Auroral diagnosis of solar wind interaction with Jupiter's magnetosphere (2020) (4)
- Where Is the Io Plasma Torus? A Comparison of Observations by Juno Radio Occultations to Predictions From Jovian Magnetic Field Models (2020) (4)
- Energetic Electron Distributions Near the Magnetic Equator in the Jovian Plasma Sheet and Outer Radiation Belt Using Juno Observations (2021) (4)
- Juno Spacecraft Measurements of Jupiter’s Gravity Imply a Dilute Core (2022) (4)
- Energetic Charged Particle Fluxes Relevant to Ganymede's Polar Region (2022) (4)
- Ganymede Observations by JunoCam on Juno Perijove 34 (2022) (4)
- High-Precision Laboratory Measurements Supporting Retrieval of Water Vapor, Gaseous Ammonia, and Aqueous Ammonia Clouds with the Juno Microwave Radiometer (MWR) (2017) (4)
- Keys of a Mission to Uranus or Neptune, the Closest Ice Giants (2020) (4)
- Interpretation of the observed changes in Jupiter's synchrotron radiation during and after the impacts from comet Shoemaker-Levy 9 (1997) (4)
- Detection of a Bolide in Jupiter's Atmosphere With Juno UVS (2021) (4)
- MASPEX-Europa aboard Clipper: A mass spectrometer for investigating the habitability of Europa (2019) (3)
- Substorm-like aurora at Jupiter (2020) (3)
- Observations and Electron Density Retrievals of Jupiter's Discrete Auroral Arcs Using the Juno Microwave Radiometer (2020) (3)
- Jupiter's Overturning Circulation: Breaking Waves Take the Place of Solid Boundaries (2021) (3)
- The Juno Mission and the Origin of Jupiter (2015) (3)
- Infrared Observations of Ganymede From the Jovian InfraRed Auroral Mapper on Juno (2020) (3)
- Differential Rotation in Jupiter's Interior Revealed by Simultaneous Inversion for the Magnetic Field and Zonal Flux Velocity (2022) (3)
- Local Time Dependence of Jupiter's Polar Auroral Emissions Observed by Juno UVS (2021) (3)
- Gravity Field of Ganymede After the Juno Extended Mission (2021) (3)
- Distribution of Interplanetary Dust Detected by the Juno Spacecraft and Its Contribution to the Zodiacal Light (2020) (3)
- Tracing the origins of the Solar System (2005) (3)
- On the clouds and ammonia in Jupiter’s upper troposphere from Juno JIRAM reflectivity observations (2021) (3)
- First observations near Jupiter by the Juno Waves investigation (2017) (3)
- Determination of Jupiter’s Mass from Juno Radio Tracking Data (2021) (3)
- In Situ Ion Composition Observations of Ganymede's Outflowing Ionosphere (2022) (3)
- Magnetic Field Conditions Upstream of Ganymede (2022) (3)
- Examining the Dynamics of Llow-Energy Electrons in Saturn's Magnetosphere by combining Cassini CAPS-ELS Data with Charged Particle Transport Model. (2007) (3)
- Using D/H Ratio of Water and Volatile Organics to Constrain Thermogenic Processes Inside Ice-Rock Bodies (2019) (3)
- MWR: Microwave Radiometer for the Juno Mission to Jupiter (2017) (3)
- Evidence for Multiple Ferrel‐Like Cells on Jupiter (2021) (3)
- Residual Study: Testing Jupiter Atmosphere Models Against Juno MWR Observations (2019) (2)
- Characterization of the Great Red Spot from Observations by Juno and the Earth-Based Supporting Campaign (2017) (2)
- Flow patterns of Jupiter's south polar region (2021) (2)
- Detection and Characterization of Circular Expanding UV‐Emissions Observed in Jupiter's Polar Auroral Regions (2021) (2)
- DSN and GAVRT observations of Jupiter at 13 GHz and the calibration of the Cassini radar instrument for passive radiometry (2002) (2)
- Analysis of Jovian low-frequency radio emissions based on stereoscopic observations with Juno and Earth-based radio telescopes (2017) (2)
- On the content of minor species in the upper Jupiter troposphere as inferred from JIRAM Juno data (2019) (2)
- A polar orbiter to probe Jupiter's deep atmosphere, interior structure and polar magnetosphere (2003) (2)
- Energetic Neutral Atoms From Jupiter's Polar Regions (2020) (2)
- Neutral Exosphere Densities and Structures at Titan Inferred from Pickup Ions Observed by CAPS (2005) (2)
- Evidence for low density holes in Jupiter’s ionosphere (2019) (2)
- An Overview of the Juno JIRAM Results from the First Perijove Pass. (2016) (2)
- Searching for low‐altitude magnetic field anomalies by using observations of the energetic particle loss cone on JUNO (2017) (2)
- Closed Fluxtubes and Dispersive Proton Conics at Jupiter's Polar Cap (2022) (2)
- Simultaneous UV Images and High-latitude Particle and Field Measurements During an Auroral Dawn Storm at Jupiter (2021) (2)
- Mapping Io's Surface Composition With Juno/JIRAM (2020) (2)
- Editorial: Topical Collection of the Juno Mission Science Objectives, Instruments, and Implementation (2017) (2)
- Loss of Energetic Ions Comprising the Ring Current Populations of Jupiter's Middle and Inner Magnetosphere (2022) (2)
- Juno spacecraft gravity measurements provide evidence for normal modes of Jupiter (2022) (2)
- Surface Features of Ganymede Revealed in Jupiter‐Shine by Juno’s Stellar Reference Unit (2022) (2)
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- Radio and Plasma Wave Science Opportunities Afforded by the Jupiter Icy Moons Orbiter (2003) (0)
- A Model for the Satellite Neutral Atmosphere Source, from Sublimation (1997) (0)
- The Juno Gravity Science Instrument (2017) (0)
- The depth and structure of the atmospheric flows on Jupiter: results from the Juno gravity measurements (2017) (0)
- Effect of a magnetosphere compression on Jovian radio emissions: in situ case study using Juno data (2022) (0)
- Simultaneous UV Images and Particle Measurements of an Auroral Dawn Storm at Jupiter (2020) (0)
- Juno ASC observations of low light phenomena on the Jovian night side (2018) (0)
- Jupiter's surprising space environments as revealed by the Juno mission (2018) (0)
- The Structure and Properties of 0.1 - 100 keV Electron Distributions Over Jupiter's Polar Aurora Region and their Contribution to Polar Aurora Emissions (2017) (0)
- Energetic proton acceleration by EMIC waves in Io’s footprint tail (2023) (0)
- Prevalent lightning sferics at 600 megahertz near Jupiter’s poles (2018) (0)
- Simultaneous Juno observations of the ultraviolet Jovian aurora and electron in situ downward flux measurements during Juno perijove passes (2019) (0)
- Atmospheric Structure of Jupiter's Vortices as retrieved by Juno/JIRAM Data (2018) (0)
- Giant Planet Atmospheres: The Illusion of Element Enrichment (2015) (0)
- Birkeland currents in Jupiter’s magnetosphere observed by the polar-orbiting Juno spacecraft (2019) (0)
- A Juno / Hisaki joint effort to monitor Jupiter’s electron-belt radiation during Juno’s cruise (2018) (0)
- Evidence of Injection Driven Aurora at Jupiter during Juno Perijove 5 (2019) (0)
- The complex behavior of the satellite footprints at Jupiter: the result of universal processes? (2016) (0)
- Calibration of a Deep-Sounding Radiometer for a Jupiter Flyby (2000) (0)
- Jupiter’s Magnetosphere: Plasma Sources and Transport (2015) (0)
- Distribution of Lightning and Moist Convection on Jupiter (2019) (0)
- Juno/Waves Observations of flux tubes connected to Io's orbit (2019) (0)
- Implications of Initial Juno Magnetic Field Models for the Jovian Dynamo (2018) (0)
- Cassini, VLA, and DSN observations of Jupiter's synchrotron emission (2001) (0)
- Method to observe O + and S 2+ by the JADE-I instrument on NASA's Juno mission to Jupiter (2016) (0)
- Energetic Proton Distributions in the Inner and Middle Magnetosphere of Jupiter Using Juno Observations (2022) (0)
- First Results at Jupiter from the Microwave Radiometer Investigation (2016) (0)
- Juno at Jupiter: Mission and Science (2016) (0)
- Overview Of Juno's Results At Jupiter (2017) (0)
- JADE observations highlights (2018) (0)
- The Io, Europa and Ganymede auroral footprints at Jupiter in the ultraviolet: Positions and equatorial lead angles (2023) (0)
- Juno-UVS Observations of Jupiter's Aurora and Airglow Emissions (2018) (0)
- A Study of Short-Term Variations in Jupiter's Synchrotron Emission (1999) (0)
- Jupiter's non-thermal radio emission: unveiling the jovian inner radiation belts through observations and modeling (2002) (0)
- JunoCam's Images of Jupiter (2016) (0)
- Jupiter dayside as seen by JIRAM-Juno: current status and examples of spectral data analysis (2020) (0)
- Galileo and Cassini at Jupiter (2000) (0)
- Long-term tracking of circumpolar cyclones on Jupiter's poles. (2018) (0)
- Study of Jovian synchrotron emission with the NASA's Deep Space Network for Juno mission (2016) (0)
- Jupiter's synchrotron emission: unveiling the Jovian inner radiation belts through modeling and observation (2001) (0)
- Preliminary VLA analysis of changes in Jupiter's synchrotron emission after the collision of an object with Jupiter in July 2009 (2010) (0)
- JunoCam Images of Jupiter: Science from an Outreach Experiment (2017) (0)
- First Observations of CH4 and H3+ ${\mathrm{H}}_{3}^{+}$ Spatially Resolved Emission Layers at Jupiter Equator, as Seen by JIRAM/Juno (2023) (0)
- Results on Jupiter's Atmosphere from the Juno Microwave Radiometer (2017) (0)
- The giordano bruno project: multiple missions to multiple worlds (2004) (0)
- Remote Laser Diffraction Particle Size Distribution Analyzer (2001) (0)
- Remote Laser Diffraction PSD Analyzer (2000) (0)
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