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Related papers: Basaltic material in the main belt: a tale of two …

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We present the observational results of a survey designed to target and detect asteroids whose colors are similar to those of Vesta family members and thus may be considered as candidates for having a basaltic composition. Fifty basaltic…

In recent years several small basaltic V-type asteroids have been identified all around the main belt. Most of them are members of the Vesta dynamical family, but an increasingly large number appear to have no link with it. The question…

Earth and Planetary Astrophysics · Physics 2015-10-30 S. Ieva , E. Dotto , D. Lazzaro , D. Perna , D. Fulvio , M. Fulchignoni

Basaltic V-type asteroids are leftovers from the formation and evolution of differentiated planetesimals. They are thought to originate from mantles and crusts of multiple different parent bodies. Identifying the links between individual…

Earth and Planetary Astrophysics · Physics 2023-04-12 Volodymyr Troianskyi , Pawel Kankiewicz , Dagmara Oszkiewicz

Basaltic asteroids (V-types) are believed to be fragments of large differentiated bodies. The majority of them are found in the inner part of the asteroid belt, and are current or past members of the Vesta family. Recently, some V-type…

Earth and Planetary Astrophysics · Physics 2017-04-12 J. Licandro , M. Popescu , J. de Leon , D. Morate

We aim to determine the distribution of basaltic asteroids (classified as V-types) based on the spectrophotometric data reported in the MOVIS-C catalogue. A total of 782 asteroids were identified. The observations with all four filters (Y,…

Earth and Planetary Astrophysics · Physics 2020-01-08 Jad-Alexandru Mansour , Marcel Popescu , Julia de León , Javier Licandro

V-type asteroids, characterized by two absorption bands at 1.0 and 2.0 $\mu m$, are usually thought to be portions of the crust of differentiated or partially differentiated bodies. Most V-type asteroids are found in the inner main belt and…

Earth and Planetary Astrophysics · Physics 2015-06-22 Mariela E. Huaman , Valerio Carruba , Rita Cassia Domingos

V-type asteroids are associated with basaltic composition, and are supposed to be fragments of crust of differentiated objects. Most V-type asteroids in the main belt are found in the inner main belt, and are either current members of the…

Earth and Planetary Astrophysics · Physics 2014-03-05 V. Carruba , M. E. Huaman , R. C. Domingos , C. R. Dos Santos , D. Souami

Most of the currently known basaltic (V-type) asteroids are believed to be past or present members of the Vesta dynamical family. The rising discoveries of V-type asteroids that are not dynamically linked to the Vesta family suggest that a…

Earth and Planetary Astrophysics · Physics 2020-10-28 Pavol Matlovič , Julia de Leon , Hissa Medeiros , Marcel Popescu , Juan Luis Rizos , Jad-Alexandru Mansour

V-type asteroids in the inner Main Belt (a < 2.5 AU) and the HED meteorites are thought to be genetically related to one another as collisional fragments from the surface of the large basaltic asteroid 4 Vesta. We investigate this…

Earth and Planetary Astrophysics · Physics 2015-05-18 Nicholas Moskovitz , Mark Willman , Thomas Burbine , Richard Binzel , Schelte Bus

There is a great deal of scientific interest in characterizing the basaltic asteroids (spectrally classified as V-types), as they are the key to understanding planetesimal formation and evolution in the early Solar System. These have long…

Earth and Planetary Astrophysics · Physics 2022-12-07 Dagmara Oszkiewicz , Hanna Klimczak , Benoit Carry , Antti Penttila , Marcel Popescu , Joahim Kruger , Marcelo Aron Keniger

Most asteroid families are very homogeneous in physical properties. Some show greater diversity, however. The Flora family is the most intriguing of them. The Flora family is spread widely in the inner main belt, has a rich collisional…

Earth and Planetary Astrophysics · Physics 2015-11-18 Dagmara Oszkiewicz , Paweł Kankiewicz , Ireneusz Włodarczyk , Agnieszka Kryszczyńska

V-type asteroids are a taxonomic class whose surface is associated to a basaltic composition. The only known source of V-type asteroids in the Main Asteroid Belt is (4) Vesta, that is located in the inner part of the belt. However, many…

Earth and Planetary Astrophysics · Physics 2017-03-03 Pedro Brasil , Fernando Roig , David Nesvorný , Valerio Carruba

We present near-infrared (0.78-2.45 {\mu}m) reflectance spectra for nine middle and outer main belt (a > 2.5 AU) basaltic asteroids. Three of these objects are spectrally distinct from all classifications in the Bus-DeMeo system and could…

The majority of basaltic asteroids are found in the inner main belt, although a few have also been observed in the outer main belt and near-Earth space. These asteroids -referred to as V-types- have surface compositions that resemble that…

Earth and Planetary Astrophysics · Physics 2015-05-19 S. Marchi , M. C. De Sanctis , M. Lazzarin , S. Magrin

Investigations of the main asteroid belt and efforts to constrain that population's physical characteristics involve the daunting task of studying hundreds of thousands of small bodies. Taxonomic systems are routinely employed to study the…

Earth and Planetary Astrophysics · Physics 2018-06-27 Paul S. Hardersen , Vishnu Reddy , Edward Cloutis , Matt Nowinski , Margaret Dievendorf , Russell M. Genet , Savan Becker , Rachel Roberts

Among the largest objects in the main belt, asteroid 4 Vesta is unique in showing a basaltic crust. It is also the biggest member of the Vesta family, which is supposed to originate from a large cratering event about 1 Gyr ago (Marzari et…

A bombardment of comets is thought to have occurred in the inner solar system as a result of a dynamical instability among the giant planets after gas disk dispersal. Vesta, the second largest asteroid in the main asteroid belt, likely…

Earth and Planetary Astrophysics · Physics 2025-11-18 Sarah Joiret , Guillaume Avice , Ludovic Ferrière , Zoë M. Leinhardt , Simon Lock , Alexandre Mechineau , Sean N. Raymond

The main asteroid belt (MAB) is known to be primarily composed of objects from two distinct taxonomic classes, generically defined here as S- and C-complex. The former probably originated from the inner solar system (interior to Jupiter's…

Earth and Planetary Astrophysics · Physics 2024-04-08 Rogerio Deienno , David Nesvorny , Matthew S. Clement , William F. Bottke , Andre Izidoro , Kevin J. Walsh

Differentiated asteroids are rare in the main asteroid belt despite evidence for ~100 distinct differentiated bodies in the meteorite record. We have sought to understand why so few main-belt asteroids differentiated and where those…

The asteroid belt is the leftover of the original planetesimal population in the inner solar system. However, currently the asteroids have orbits with all possible values of eccentricities and inclinations compatible with long-term…

Earth and Planetary Astrophysics · Physics 2016-08-31 Alessandro Morbidelli , Kevin J. Walsh , David P. O'Brien , David A. Minton , William F. Bottke
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