Minor Bodies of the Solar System

    General
    Description

    This project studies the physical and compositional properties of the so-called minor bodies of the Solar System, that includes asteroids, icy objects, and comets. Of special interest are the trans-neptunian objects (TNOs), including those considered the most distant objects detected so far (Extreme-TNOs or ETNOs); the comets and the comet-asteroid transitional objects (Centaurs and main belt comets or MBCs); the primitive asteroids. The last two groups contain the most primordial and pristine material of the Solar System and so they provide the clues to understand the origin and the subsequent evolution of our system. Among asteroid population, the near-Earth asteroids or NEAs, as well as the potentially hazardous asteroids (PHAs) are of particular interest: due to their proximity to the Earth, they are the most accesible to spacecraft and so are ideal for in-situ or even sample-return space missions. In addition they are considered as future potential resources of materials (asteroid mining), and they are also impact hazards for the Earth. Regarding primitive asteroids, it is remarkable the spectroscopic survey (visible and near-infrared) led by the PI of this project (PRIMitive Asteroids Spectroscopic Survey - PRIMASS). This survey received financial support from NASA (17-PDART17_2-0097, PI: N. Pinilla-Alonso, 137.000€ - 2 years) in order to upload and archive at the Small Bodies Node of the NASA Planetary Data System the more than 800 spectra obtained.

    The compositional surface properties, as well as the physical and thermal properties of these objects are inferred through imaging, photometry, and spectroscopy in a wide range of wavelengths (from 0.35 up to 24 microns). Data are interpreted using scattering and thermo-physical models. This project works also in the study of the physical properties of the cometary nuclei, as well as properties of dust and coma in the tails of the MBCs and the mechanisms that generate them.

    This group maintains several international collaborations with other groups, and some of their members are also members of (1) the Science Team of the NASA OSIRIS-REx mission, in particular the Image Processing Working Group, were they work with the images obtained with the OCAMS suite of cameras; (2) the coordination of an international group to study NEAs (EURONEAR); (3) the central core of the proponents of ESA M5 missions CASTALIA, CASTAway, and Hera; (4) the Center for Lunar and Asteroid Surface Science - CLASS (NASA); (5) the Solar System group of the Euclid consortium; (6) the surveys J-PLUS and J-PASS for the exploitation of observations of Solar System objects; (7) the Solar System working group of Gaia and JWST.

    Principal investigator
    Project manager
    Collaborators
    Dr.
    Noemí Pinilla-Alonso
    Dr.
    Humberto Campins
    Dr.
    Fernando Moreno Danvila
    Dr.
    Y. Fernández
    Dr.
    José Luis Ortiz
    Dr.
    R. Duffard
    Prof.
    R. Hil-Hutton

    Related publications

    Opposition Observations of 162173 Ryugu: Normal Albedo Map Highlights Variations in Regolith Characteristics 2021PSJ.....2..177Y
    High-resolution observations of bright boulders on asteroid Ryugu: 2. Spectral properties 2021Icar..36914591S
    Spectrophotometric Properties of 162173 Ryugu's Surface from the NIRS3 Opposition Observations 2021PSJ.....2..178D
    High-resolution observations of bright boulders on asteroid Ryugu: 1. Size frequency distribution and morphology 2021Icar..36914529S
    Geologic History and Crater Morphology of Asteroid (162173) Ryugu 2021JGRE..12606572C
    Dust environment of active asteroids P/2019 A4 (PANSTARRS) and P/2021 A5 (PANSTARRS) 2021MNRAS.506.1733M
    Spectral diversity of the inner belt primitive asteroid background population 2021Icar..36814619A
    Regional Photometric Modeling of Asteroid (101955) Bennu 2021PSJ.....2..124G
    Natural Night Sky Brightness during Solar Minimum 2021AJ....162...25A
    Development of image texture analysis technique for boulder distribution measurements: Applications to asteroids Ryugu and Itokawa 2021P&SS..20405249T
    Activity of the Jupiter co-orbital comet P/2019 LD<SUB>2</SUB> (ATLAS) observed with OSIRIS at the 10.4 m GTC 2021A&A...650A..79L
    Resurfacing processes on asteroid (162173) Ryugu caused by an artificial impact of Hayabusa2's Small Carry-on Impactor 2021Icar..36614530H
    The active centaur 2020 MK<SUB>4</SUB> 2021A&A...649A..85D
    The EURONEAR Lightcurve Survey of Near Earth Asteroids—Teide Observatory, Tenerife, 2015 2021EM&P..125....3V
    Alignment determination of the Hayabusa2 laser altimeter (LIDAR) 2021EP&S...73...21N
    Bennu's global surface and two candidate sample sites characterized by spectral clustering of OSIRIS-REx multispectral images 2021Icar..36414467R
    Numerical modeling of lander interaction with a low-gravity asteroid regolith surface. II. Interpreting the successful landing of Hayabusa2 MASCOT 2021A&A...648A..56T
    Improved method of hydrous mineral detection by latitudinal distribution of 0.7-μm surface reflectance absorption on the asteroid Ryugu 2021Icar..36014348K
    Post-arrival calibration of Hayabusa2's optical navigation cameras (ONCs): Severe effects from touchdown events 2021Icar..36014353K
    Photometry of asteroid (101955) Bennu with OVIRS on OSIRIS-REx 2021Icar..35814183Z
    Disk-resolved photometric modeling and properties of asteroid (101955) Bennu 2021Icar..35713724G
    Near-infrared spectroscopy of the Sulamitis asteroid family: Surprising similarities in the inner belt primitive asteroid population 2021Icar..35814210A
    Collisional history of Ryugu's parent body from bright surface boulders 2021NatAs...5...39T
    Exogenic basalt on asteroid (101955) Bennu 2021NatAs...5...31D
    Spectral characterization of the craters of Ryugu as observed by the NIRS3 instrument on-board Hayabusa2 2021Icar..35714253R
    Near-infrared spectroscopy of the Chaldaea asteroid family: Possible link to the Klio family 2021Icar..35414028A
    Variations in color and reflectance on the surface of asteroid (101955) Bennu 2020Sci...370.3660D
    Crater depth-to-diameter ratios on asteroid 162173 Ryugu d/D of craters on Ryugu 2021Icar..35414016N
    Hayabusa2 Landing Site Selection: Surface Topography of Ryugu and Touchdown Safety 2020SSRv..216..116K
    A comparative analysis of the outer-belt primitive families 2020A&A...643A.102D
    Spectral characterisation of 14 V-type candidate asteroids from the MOVIS catalogue 2020A&A...643A.107M
    Dozens of virtual impactor orbits eliminated by the EURONEAR VIMP DECam data mining project 2020A&A...642A..35V
    The GAPS programme at TNG. XXIV. An eccentric Neptune-mass planet near the inner edge of the BD-11 4672 habitable zone 2020A&A...641A..68B
    Spin-driven evolution of asteroids' top-shapes at fast and slow spins seen from (101955) Bennu and (162173) Ryugu 2020Icar..35213946H
    Global photometric properties of (162173) Ryugu 2020A&A...639A..83T
    Restoring the night sky darkness at Observatorio del Teide: First application of the model Illumina version 2 2020MNRAS.497.2501A
    Physical characterization of 2020 AV<SUB>2</SUB>, the first known asteroid orbiting inside Venus orbit 2020MNRAS.496.3572P
    Sample collection from asteroid (162173) Ryugu by Hayabusa2: Implications for surface evolution 2020Sci...368..654M
    Highly porous nature of a primitive asteroid revealed by thermal imaging 2020Natur.579..518O
    IGAPS: the merged IPHAS and UVEX optical surveys of the northern Galactic plane 2020A&A...638A..18M

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