Scientific Publications - JUICE
Scientific publications
The following papers can be considered as a baseline for Juice analysis. This list will be monthly updated.
All papers |
Mission |
Instrument |
Science |
| Title | First Author | Year | DOI | Keywords |
|---|---|---|---|---|
| Energetic Proton Losses Reveal Io's Extended and Longitudinally Asymmetrical Atmosphere | Huybrighs | 2024 | ||
| The Neutral Water Torus of Europa | Nénon | 2024 | ||
| Oxygen production from dissociation of Europa’s water-ice surface | Szalay | 2024 | ||
| Europa Modifies Jupiter's Plasma Sheet | Szalay | 2024 | ||
| In situ and remote observations of the ultraviolet footprint of the moon Callisto by the Juno spacecraft | Rabia | 2025 | ||
| Precipitating electron properties of Ganymede’s aurora retrieved from Juno/UVS observations during PJ34 | Benmahi | 2025 | ||
| Mass Supply from Io to Jupiter’s Magnetosphere | Roth | 2025 | ||
| Constraining Europa's Subsolar Atmosphere With a Joint Analysis of HST Spectral Images and Galileo Magnetic Field Data | Cervantes | 2022 | ||
| An Inversion of Magnetic Field Measurements to Constrain the Depth, Thickness, and Conductivity of Europa's Ocean | Winkenstern | 2025 | ||
| Plasma and Magnetic Field Properties in Europa's Wake From Juno | Ebert | 2025 | ||
| Electron Beams at Europa | Allegrini | 2024 | ||
| Energetic Proton Dropouts During the Juno Flyby of Europa Strongly Depend on Magnetic Field Perturbations | Huybrighs | 2025 | ||
| Energetic Ion Losses Observed During Juno's Close Encounter With Europa | Clark | 2025 | ||
| Emission of Energetic Neutral Atoms From Ganymede's Magnetosphere-Atmosphere Interaction | Haynes | 2025 | ||
| MHD Simulations of Europa's Interaction With Jupiter's Magnetosphere During the Juno Flyby: Electron Beams in the Plasma Wake | Cervantes | 2025 | ||
| Ion-neutral chemistry at icy moons: the case of Ganymede | Beth | 2025 | ||
| Ionosphere of Ganymede: Galileo observations versus test particle simulation | Beth | 2025 | ||
| Prospects of Using Tidal Tomography to Constrain Ganymede's Interior | M. Rovira-Navarro | 2025 | ||
| Magnetosphere and Plasma Science with the Jupiter Icy Moons Explorer | Masters | 2025 | ||
| Plasmoids and Magnetic Field Dipolarizations During Juno's First 47 Orbits: Is Ion Acceleration Always Observed in the Dipolarizations? | Blöcker | 2024 | ||
| Dipolarization Fronts in the Jovian Magnetotail: Statistical Survey of Ion Intensity Variations Using Juno Observations | Blöcker | 2023 | ||
| Plasmoids in the Jovian Magnetotail: Statistical Survey of Ion Acceleration Using Juno Observations | Blöcker | 2022 | ||
| Acceleration of ions in Jovian plasmoids: does turbulence play a role? | Kronberg | 2019 | ||
| The quest for habitats in the outer Solar System and how to protect exotic pristine environments | A. Coustenis | 2025 | COSPAR policy on planetary protectionBiological contamination controlBioburden (reduction)Space mission categoriesHabitable environments | |
| Calibration of the JUICE RWI Antennas by Numerical Simulation | G. Fischer | 2021 | ||
| Simultaneous multi-spacecraft observations with VLBI radio telescopes to study the interplanetary phase scintillation | N. M. M. Said | 2025 | Multimessenger Astronomy Space Physics Space Studies Space Weather Astronomical instrumentation Radio | |
| Estimating the noise budget and system noise levels in closed-loop Doppler tracking of ESA’s Mars Express with VLBI radio telescopes. | P. Kummamuru | 2025 | ||
| Calibration of MAJIS (Moons and Jupiter Imaging Spectrometer): VI. The inflight calibration unit (ICU) | S. Stefani | 2025 | Calibration methods, Imaging spectroscopy, Absorption band, Optical elements, Optical fibers, Optical filters, Optical sources, Bidirectional scatter distribution functions | |
| Review of Exchange Processes on Ganymede in View of Its Planetary Protection Categorization | O. Grasset | 2013 | ||
| The JUICE Radiation Environment Monitor, RADEM | W. Hajdas | 2025 | Space radiation Detector technology Jupiter JUpiter ICy moons Explorer | |
| Impact analysis of the transponder time delay on radio-tracking observables | S. Bertone | 2018 | Space navigationTransponder delayDoppler trackingKBRROrbit determinationLight propagation | |
| The Polar Stratosphere of Jupiter | V. Hue | 2024 | ||
| Jupiter Science Enabled by ESA's Jupiter Icy Moons Explorer | L. Fletcher | 2023 | JUICE; Jupiter; Atmospheres; Auroras; Dynamics; Chemistry; Astrophysics - Earth and Planetary Astrophysics; Astrophysics - Instrumentation and Methods for Astrophysics | |
| Accuracy Of The Scalar Magnetometer Aboard Esa'S Juice Mission | C. Amtmann | 2024 | ||
| Analysis of Radio Science Data from the KaT Instrument of the 3GM Experiment During JUICE's Early Cruise Phase | P. Cappuccio | 2025 | orbit determination; radio science; planetary science | |
| Lower magnetic field measurement limit of the coupled dark state magnetometer | M. Ellmeier | 2024 | magnetic field measurement; scalar magnetometer; coherent population trapping; coupled dark state; JUICE mission; J-MAG | |
| Ray Tracing for Jupiter's Icy Moon Ionospheric Occultation of Jovian Auroral Radio Sources | R. Yasuda | 2024 | planetary radio emissions; Jupiter; Ganymede; Callisto; ionosphere; JUICE | |
| Calibration of high accuracy accelerometers for ESA missions BepiColombo and JUICE at INRIM | A. Milena | 2023 | capacitive accelerometer; calibration; BepiColombo; JUICE; HAA; ISA | |
| Perturbations of JUICE/JDC Ion Measurements Caused by Spacecraft Charging in the Jovian Magnetosphere and the Ionosphere of Ganymede | M. Bochet | 2023 | ||
| Joint analysis of JUICE and Europa Clipper tracking data to study the Jovian system ephemerides and dissipative parameters | A. Magnanini | 2025 | methods: data analysis; space vehicles; space vehicles: instruments; ephemerides; planets and satellites: dynamical evolution and stability; planets and satellites: individual: Galilean moons | |
| Mutual impedance experiments in a magnetized plasma: A numerical investigation of magnetic field and temperature anisotropy effects on a space plasma diagnostic | P. Dazzi | 2025 | magnetic fields; plasmas; waves; instrumentation: miscellaneous; methods: numerical; planets and satellites: magnetic fields | |
| Viability of the Early JUICE Flyby Trajectories to Confirm Ocean Existence at Ganymede | S. Shivangi | 2025 | Ganymede; Ocean planets; Magnetic fields; Planetary interior; Jupiter | |
| The Radio & Plasma Wave Investigation (RPWI) for the JUpiter ICy moons Explorer (JUICE) | J.-E. Wahlund | 2024 | ||
| The JANUS (Jovis Amorum ac Natorum Undique Scrutator) VIS-NIR Multi-Band Imager for the JUICE Mission | P. Palumbo | 2025 | ||
| Exploration of Jupiter’s Galilean satellites and their complex interactions with the Jovian magnetosphere: Hungary’s participation in ESA’s Jupiter Icy Moons Explorer mission | Z. Bebesi | 2025 | ||
| Three-dimensional modeling of Ganymede’s Chapman–Ferraro magnetic field and its role in subsurface ocean induction | N. Kaweeyanun | 2025 | Ganymede Magnetospheres Interiors Jupiter, satellites | |
| In Situ Observations Connected to the Io Footprint Tail Aurora | J. R. Szalay | 2018 | ||
| Stronger Evidence of a Subsurface Ocean Within Callisto From a Multifrequency Investigation of Its Induced Magnetic Field | C. J. Cochrane | 2025 | ||
| Improved Models of Ganymede's Permanent and Induced Magnetic Fields Based on Galileo and Juno Data | X. Jia | 2024 | MHD simulations, Ganymede's internal field, Ganymede's interior properties | |
| In-mission synergy of science and navigation ephemeris products—Potential benefits for JUICE statistical Delta-V expenditure and beyond | J. Hener | 2025 | JUICE, Flyby navigation, Statistical Delta-V, Radio science, Galilean moons, Ephemerides | |
| UVS Observations of Ganymede's Aurora During Juno Orbits 34 and 35 | T. K. Greathouse | 2022 | spatial resolution, auroral emissions | |
| Planetary radio interferometry and Doppler experiment as an operational component of the Jupiter Icy Moons Explorer mission | V. Pallichadath | 2024 | Interferometry VLBI Planetary missions Space science missions Radio astronomy JUICE PRIDE | |
| Monitoring JUICE deployment operations with high-accuracy accelerometer data | U. De Filippis | 2024 | HAA, sensitivity, bandwidth, measurement, vibrations, dynamic | |
| Calibration of MAJIS (Moons And Jupiter Imaging Spectrometer). III. Spectral calibration | P. Haffoud | 2024 | Spacecrafts, Imaging spectroscopy, Infrared imaging, Atomic spectral lines, Monochromators, Optical aberrations, Optical devices, Optical instruments | |
| Calibration of MAJIS (Moons And Jupiter Imaging Spectrometer). II. Spatial calibration | G. Filacchione | 2024 | Passive radiator, Spacecrafts, Telemetry, Imaging spectroscopy, Optical imaging, Monochromators, Optical devices, Optical elements, Optical properties, Telescopes | |
| Calibration of the Moons And Jupiter Imaging Spectrometer (MAJIS): Introduction to the special collection and summary of the performances | F. Poulet | 2024 | Spacecrafts, Jovian satellites, Galilean moons, Space instruments, Imaging spectroscopy, Radiation shielding, Optical coatings, Optical elements | |
| Calibration of MAJIS (Moons and Jupiter Imaging Spectrometer): V. Validation with mineral samples and reference materials | S. Rodriguez | 2024 | Image processing, Jovian satellites, Optical imaging, Optical properties, Minerals, Imaging spectroscopy, Surface and interface chemistry, Absorption band | |
| Surface Charging of the Jupiter Icy Moons Explorer (JUICE) Spacecraft in the Solar Wind at 1 AU | M. K. G. Holmberg | 2024 | ||
| Characterization of the Surfaces and Near-Surface Atmospheres of Ganymede, Europa and Callisto by JUICE | F. Tosi | 2024 | JUICE, Icy Galilean satellites, Geology, Surface composition, Near-surface atmospheres | |
| Geophysical Characterization of the Interiors of Ganymede, Callisto and Europa by ESA’s JUpiter ICy moons Explorer | T. V. Hoolst | 2024 | JUICE Ganymede Callisto Europa Interior Evolution Geophysics | |
| Tropospheric Delay Calibration System Performance During the First Two BepiColombo Solar Conjunctions | R. Lasagni Manghi | 2023 | 3GM | |
| Joint analysis of JUICE and Europa Clipper tracking data to study the Jovian system ephemerides and dissipative parameters | A. Magnanini | 2024 | Ephemerides – planets and satellites: individual:Galilean moons – planets and satellites: dynamical evolution and stability - Space vehicles: instruments – Methods: data analysis | |
| Observation of Io's Resurfacing via Plume Deposition Using Ground-Based Adaptive Optics at Visible Wavelengths With LBT SHARK-VIS | Al Conrad | 2024 | High resolution images, albedo features, Pele's red ring, eruption deposit, Pillan Patera, | |
| Jupiter's Low-Altitude Auroral Zones: Fields, Particles, Plasma Waves, and Density Depletions | A. H. Sulaiman | 2022 | Zone-I, Zone-II, large-scale electron density depletions, auroral acceleration processes | |
| The successful recovery of the Juice RIME antenna deployment | R. Le Letty | 2023 | Spacetech (STI), booms, ice penetrating radar, fail, anomaly | |
| An analysis of possible asteroids flyby for the ESA JUICE mission | L. Agostini | 2022 | asteroid, cruise phase, analysis, opportunity | |
| JUICE (JUpiter ICy moon Explorer) Thermal Performance after One Year in Space | R. Peyrou-Lauga | 2024 | ||
| The JUICE Mission: Challenges and Expectations | A. Coustenis | 2021 | ||
| JUpiter ICy moons Explorer (JUICE): An ESA mission to orbit Ganymede and to characterise the Jupiter system | O. Grasset | 2013 | Space exploration, Ganymede, Jupiter, Europa, Callisto, Jovian system | |
| Moons and Jupiter Imaging Spectrometer (MAJIS) on Jupiter Icy Moons Explorer (JUICE) | F. Poulet | 2024 | Juice, Jupiter, Jovian satellites, Imaging spectroscopy, Visible, Infrared | |
| Planetary Radio Interferometry and Doppler Experiment (PRIDE) of the JUICE Mission | L. I. Gurvits | 2023 | VLBI, Doppler tracking, State vector determination | |
| Selection of chemical species for Europa's surface using Galileo/NIMS | G. Cruz Mermy | 2023 | Europa, Infrared spectroscopy, Galileo/NIMS, Surface ices, Radiative transfer | |
| Assessing JUICE's ability of in situ plume detection in Europa's atmosphere | T. O. Winterhalder | 2022 | JUICE, Europa, Plumes, Particle detector, Atmospheres | |
| The in-situ exploration of Jupiter's radiation belts | E. Roussos | 2022 | Jupiter, Radiation belts, Magnetosphere, Voyage-2050, Space missions | |
| Pitch Angle Distribution of MeV Electrons in the Magnetosphere of Jupiter | Q. Nénon | 2022 | electron, distribution, Galileo, aurora, magnetosphere, Jupiter | |
| Thermal conductivity measurements of macroscopic frozen salt ice analogues of Jovian icy moons in support of the planned JUICE mission | C. Gonzalez Diaz | 2022 | conduction, methods: laboratory, planets and satellites: fundamental parameters, Astrophysics - Earth and Planetary Astrophysics, Astrophysics - Instrumentation and Methods for Astrophysics | |
| Revealing the source of Jupiter's x-ray auroral flares | Z. Yao | 2021 | Jupiter, plasma, magnetic field, energy, x-ray, aurora | |
| Regions of interest on Ganymede's and Callisto's surfaces as potential targets for ESA's JUICE mission | K. Stephan | 2021 | JUICE mission, Ganymede, Callisto, Surface features, Target regions, Observation planning | |
| Electron-Induced Upsets and Stuck Bits in SDRAMs in the Jovian Environment | D. Söderström | 2021 | Electron radiation, radiation effects, single-event upsets (SEUs), stuck bits, total ionizing dose (TID), Total ionizing dose, SDRAM, Single event upsets, Jupiter | |
| The Ganymede Laser Altimeter (GALA) for the Jupiter Icy Moons Explorer (JUICE): Mission, science, and instrumentation of its receiver modules | K. Enya | 2022 | GALA, JUICE, mission, Ganymede, Jupiter, topography, subsurface, tide, performance | |
| Materials charging investigations for JUICE | B. Delacourt | 2021 | Charging, Conductivity, Jupiter Icy Moons Explorer (JUICE), Spacecraft, Surface potential decay (SPD), Atomic oxygen (ATOX) | |
| Jovian auroral radio source occultation modelling and application to the JUICE science mission planning | B. Cecconi | 2021 | Planetary radio emissions, Jupiter, Astrophysics - Instrumentation and Methods for Astrophysics, Astrophysics - Earth and Planetary Astrophysics | |
| Sputtering of surface matter from Europa | H. Lammer | 2002 | Europa, Planetary Surfaces, Space Missions, Molecules | |
| The Space Environment of Io and Europa | F. Bagenal | 2020 | Io, Europa, plasma interaction, neutral cloud, plasma torus | |
| Calibration of high accuracy accelerometers for ESA missions BepiColombo and JUICE at INRIM | A. Milena | 2023 | capacitive accelerometer, calibration, BepiColombo, JUICE, HAA, ISA |