activity
20172025
most citedEjecta from the DART-produced active asteroid Dimorphos

119 citations · 487 across the 18 of their papers we have counts for

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19 papers · 1 filter

astro-ph.EP2025★ 25 cited

The Dynamical State of the Didymos System Before and After the DART Impact

Derek C. Richardson, Harrison F. Agrusa, Brent Barbee +50

NASA's Double Asteroid Redirection Test (DART) spacecraft impacted Dimorphos, the natural satellite of (65803) Didymos, on 2022 September 26, as a first successful test of kinetic…

astro-ph.EP2023★ 119 cited

Ejecta from the DART-produced active asteroid Dimorphos

Jian-Yang Li, Masatoshi Hirabayashi, Tony L. Farnham +61

Some active asteroids have been proposed to be the result of impact events. Because active asteroids are generally discovered serendipitously only after their tail formation, the p…

astro-ph.EP2022

After DART: Using the first full-scale test of a kinetic impactor to inform a future planetary defense mission

Thomas S. Statler, Sabina D. Raducan, Olivier S. Barnouin +38

NASA's Double Asteroid Redirection Test (DART) is the first full-scale test of an asteroid deflection technology. Results from the hypervelocity kinetic impact and Earth-based obse…

astro-ph.EP2022

Effects of impact and target parameters on the results of a kinetic impactor: predictions for the Double Asteroid Redirection Test (DART) mission

Angela M. Stickle, Mallory E. DeCoster, Christoph Burger +30

The Double Asteroid Redirection Test (DART) spacecraft will impact into the asteroid Dimorphos on September 26, 2022 as a test of the kinetic impactor technique for planetary defen…

astro-ph.EP2022★ 47 cited

Predictions for the Dynamical States of the Didymos System before and after the Planned DART Impact

Derek C. Richardson, Harrison F. Agrusa, Brent Barbee +33

NASA's Double Asteroid Redirection Test (DART) spacecraft is planned to impact the natural satellite of (65803) Didymos, Dimorphos, around 23:14 UTC on 26 September 2022, causing a…

astro-ph.EP2021★ 23 cited

Collision Chains among the Terrestrial Planets. III. Formation of the Moon

Erik Asphaug, Alexandre Emsenhuber, Saverio Cambioni +2

In the canonical model of Moon formation, a Mars-sized protoplanet "Theia" collides with proto-Earth at close to their mutual escape velocity and a common impact angl…