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Particles collected by Hayabusa give absolute age of asteroid Itokawa by Staff Writers Osaka, Japan (SPX) Aug 28, 2018
Understanding the origin and time evolution of near-Earth asteroids (NEAs) is an issue of scientific interest and practical importance because they are potentially hazardous to the Earth. However, when and how these NEAs were formed and what they suffered during their lifetime remain enigmas. Japanese scientists, including those from Osaka University, closely examined particles collected from the asteroid Itokawa by the spacecraft Hayabusa, finding that the parent body of Itokawa was formed about 4.6 billion years ago when the solar system was born and that it was destroyed by a collision with another asteroid about 1.5 billion years ago. Their research results were published in Scientific Reports. Focusing on a few micrometers of phosphate minerals, which are rarely found in Itokawa particles, the scientists performed precise isotope analyses of uranium (U) and lead (Pb) in Itokawa particles of about 50 um in diameter using Secondary Ion Mass Spectrometry (SIMS). Lead author Kentaro Terada says, "By combining two U decay series, 238U-206Pb (with a half-life of 4.47 billion years) and 235U-207Pb (with a half-life of 700 million years), using four Itokawa particles, we clarified that phosphate minerals crystalized during a thermal metamorphism age (4.64+/-0.18 billion years ago) of Itokawa's parent body, experiencing shock metamorphism due to a catastrophic impact event by another body 1.51+/-0.85 billion years ago." It has been reported that the mineralogy and geochemistry of the Itokawa particles resemble those of LL (LL stands for Low (total) iron, Low metal) chondrites, which frequently fall to the Earth. However, the shock ages of Itokawa particles obtained from this study (1.5 billion years ago) are different from previously reported shock ages of shocked LL chondrites (4.2 billion years ago). This shows that the asteroid Itokawa had a time evolution different from that of the parent body of LL chondrites. The results of this study established constraints on the timescale of the first samples collected from the asteroid, providing concrete figures (absolute age) to the evolution of the NEAs whose orbits are well known. This will lead to the elucidation of the origins and histories of asteroids.
Research Report: "Thermal and impact histories of 25143 Itokawa recorded in Hayabusa particles"
Aerojet Rocketdyne Propulsion Powers OSIRIS-REx's Approach of Asteroid Bennu Redmond WA (SPX) Aug 27, 2018 Powered by Aerojet Rocketdyne propulsion, OSIRIS-REx's long-awaited approach of Asteroid Bennu has officially begun. With the asteroid now in sight, the spacecraft's onboard thrusters will begin to conduct a number of approach maneuvers to match Bennu's orbital velocity to prepare for arrival on Dec. 3. Numbering 28 in total, all of the rocket engines on the Lockheed Martin-built OSIRIS-REx spacecraft are provided by Aerojet Rocketdyne. The propulsion devices on the spacecraft include four MR-107S ... read more
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