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Asteroid (175706) 1996 FG3 is a binary asteroid and the baseline target for the proposed MarcoPolo-R sample-return mission. We present thermal IR photometry obtained with the ESO VLT+VISIR together with optical photometry obtained with the…

Using our photometric observations taken between 1996 and 2013 and other published data, we derived properties of the binary near-Earth asteroid (175706) 1996 FG3 including new measurements constraining evolution of the mutual orbit with…

In order to obtain the substantial information about the surface physics and thermal property of the target asteroid (162173) 1999 JU3, which will be visited by Hayabusa 2 in a sample return mission, with the Advanced Thermal Physical Model…

Earth and Planetary Astrophysics · Physics 2018-05-15 Liangliang Yu , Jianghui Ji , Su Wang

Near-Earth asteroid 162173 (1999 JU3) is a potential flyby and rendezvous target for interplanetary missions because of its easy to reach orbit. The physical and thermal properties of the asteroid are relevant for establishing the…

The near-Earth asteroid (NEA) (175706) 1996 FG3 is a particularly interesting spacecraft target: a binary asteroid with a low-DeltaV heliocentric orbit. The orbit of its satellite has provided valuable information about its mass density…

Earth and Planetary Astrophysics · Physics 2012-03-23 Kevin J. Walsh , Marco Delbo , Michael Mueller , Richard P. Binzel , Francesca E. DeMeo

The near-Earth asteroid (3200) Phaethon is an intriguing object: its perihelion is at only 0.14 au and is associated with the Geminid meteor stream. We aim to use all available disk-integrated optical data to derive a reliable convex shape…

Aims. To derive the thermal inertia of 2008 EV$_5$, the baseline target for the Marco Polo-R mission proposal, and infer information about the size of the particles on its surface. Methods. Values of thermal inertia are obtained by fitting…

Earth and Planetary Astrophysics · Physics 2015-06-17 V. Alí-Lagoa , L. Lionni , M. Delbo , B. Gundlach , J. Blum , J. Licandro

In this work, we investigate the surface thermophysical properties (thermal emissivity, thermal inertia, roughness fraction and geometric albedo) of asteroid (99942) Apophis, using the currently available thermal infrared observations of…

Earth and Planetary Astrophysics · Physics 2017-09-20 LiangLiang Yu , Jianghui Ji , Wing-Huen Ip

We present thermal properties and an improved shape model for potentially hazardous asteroid (162421) 2000 ET70. In addition to the radar data from 2000 ET70's apparition in 2012, our model incorporates optical lightcurves and infrared…

Near-Earth binary asteroid (175706) 1996 FG3 is the current backup target of the ESA MarcoPolo-R mission, selected for the study phase of ESA M3 missions. It is a primitive (C-type) asteroid that shows significant variation in its visible…

Earth and Planetary Astrophysics · Physics 2013-07-23 J. de Leon , V. Lorenzi , V. Ali-Lagoa , J. Licandro , N. Pinilla-Alonso , H. Campins

The thermal inertia of an asteroid is an indicator of the thermophysical properties of the regolith and is determined by the size of grains on the surface. Previous thermophysical modeling studies of asteroids have identified or suggested…

Earth and Planetary Astrophysics · Physics 2021-07-14 Eric M. MacLennan , Joshua P. Emery

We present new thermophysical model (TPM) fits of 1,847 asteroids, deriving thermal inertia, diameter, and Bond and visible geometric albedo. We use thermal flux measurements obtained by the Wide-field Infrared Survey Explorer (WISE; Wright…

Earth and Planetary Astrophysics · Physics 2023-05-04 Denise Hung , Josef Hanuš , Joseph R. Masiero , David J. Tholen

The near-Earth asteroid (99942) Apophis is a potentially hazardous asteroid. We obtained far-infrared observations of this asteroid with the Herschel Space Observatory's PACS instrument at 70, 100, and 160 micron. These were taken at two…

Earth and Planetary Astrophysics · Physics 2014-06-04 T. G. Müller , C. Kiss , P. Scheirich , P. Pravec , L. O'Rourke , E. Vilenius , B. Altieri

Differential heating and radiation on asymmetric asteroids can cause measurable changes in their rotation rates and spin axes, known as the YORP effect. In binary systems, such radiation-driven torques can change the mutual asteroid orbits,…

Earth and Planetary Astrophysics · Physics 2025-08-27 Kya C. Sorli , Paul O. Hayne , Rachel H. Cueva , Chloe J. Long , Jay W. McMahon , Daniel J. Scheeres

We report a successful observation of a stellar occultation by asteroid (16583) Oersted, enabling a detailed physical characterization of its shape, spin state, and surface properties. Our goal is to determine the physical parameters of…

Earth and Planetary Astrophysics · Physics 2026-01-14 Josef Hanuš , Marco Delbo , Petr Pokorný , Franck Marchis , Thomas M. Esposito

Context. The close approach of the near-Earth asteroid (99942) Apophis to Earth in 2029 will provide a unique opportunity to examine how the physical properties of the asteroid could be changed due to the Earth's gravitational perturbation.…

Thermophysical Models (TPMs), which have proven to be a powerful tool in the interpretation of the infrared emission of asteroid surfaces, typically make use of a priori obtained shape models and spin axes for use as input boundary…

Earth and Planetary Astrophysics · Physics 2020-10-22 Eric M. MacLennan , Joshua P. Emery

In this work, we investigate the thermophysical properties of OSIRIS-REx target asteroid (101955) Bennu (hereafter, Bennu), where thermal inertia plays an important role in understanding the nature of the asteroid's surface, and will…

Earth and Planetary Astrophysics · Physics 2015-11-10 LiangLiang Yu , Jianghui Ji

Thermophysical models allow for improved constraints on the physical and thermal surface properties of asteroids beyond what can be inferred from more simple thermal modeling, provided a sufficient number of observations is available. We…

Earth and Planetary Astrophysics · Physics 2019-08-14 Joseph R. Masiero , E. L. Wright , A. K. Mainzer
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