---
title: "Astronomers Spot Bits of Entirely Different Asteroid on Surface of Bennu"
description: "NASA's OSIRIS-REx spacecraft spotted some strangely light colored rocks on the surface of asteroid Bennu — likely from an entirely different asteroid."
date: "2020-09-21"
modified: "2020-09-21"
authors:
  - name: "Victor Tangermann"
    job_title: "Senior Editor"
    link: "https://futurism.com/authors/victor"
url: "https://futurism.com/astronomers-bits-different-asteroid-bennu"
categories:
  - "Science & Energy"
tags:
  - "asteroid"
  - "bennu"
  - "NASA"
  - "osiris-rex"
  - "vesta"
---

# Astronomers Spot Bits of Entirely Different Asteroid on Surface of Bennu

![NASA's OSIRIS-REx spacecraft spotted some strangely light colored rocks on the surface of asteroid Bennu — likely from an entirely different asteroid.](<https://futurism.com/wp-content/uploads/2020/09/astronomers-bits-different-asteroid-bennu.jpg>)
*\<em\>Image: NASA/Goddard/University of Arizona\</em\>*

It's like a massive game of "Asteroids."

NASA's [OSIRIS-REx](<https://futurism.com/tags/osiris-rex>) spacecraft spotted some strangely light-colored rocks on the surface of asteroid Bennu — and after some investigating, scientists have figured out where they're most likely from: an entirely different and much larger asteroid.

[Since December 2018](<https://futurism.com/asteroid-bennu-nasa-osiris-rex-mission>), the tiny spacecraft has been getting a close look at [Bennu](<https://futurism.com/tags/bennu>), a near-Earth asteroid just short of 500 meters across. In October, Osiris-Rex will attempt to plunge towards the asteroid's surface to collect a sample.

But during their investigations analyzing a wealth of surface scans, the OSIRIS-REx team found itself puzzled by the strange rocks.

"We found six boulders ranging in size from 5 to 14 feet (about 1.5 to 4.3 meters) scattered across Bennu’s southern hemisphere and near the equator," Daniella DellaGiustina of the Lunar & Planetary Laboratory, University of Arizona, Tucson, and primary author of [the paper](<https://www.nature.com/articles/s41550-020-1195-z>) published today in *Nature Astronomy*, said in a [NASA statement](<https://www.nasa.gov/feature/goddard/2020/bennu-vesta-meteorites>).

https://youtu.be/RRDObFMY9ak

"These boulders are much brighter than the rest of Bennu and match material from Vesta," DellaGiustina said. In fact, according to scans by OSIRIS-REx's camera suite, the rocks appeared to be ten times brighter than their surroundings.

Vesta, first discovered over 200 years ago by German astronomer Heinrich Wilhelm Matthias Olbers, is one of the largest objects in the asteroid belt, measuring over 500 kilometers from end to end. Scientists predict it accounts for about [nine percent](<https://nineplanets.org/vesta/>) of the mass of the entire asteroid belt.

By analyzing spectrometer readings from OSIRIS, the team found that the light rocks were likely made out of the mineral pyroxene, exactly the kind of material that had been spotted on Vesta and its smaller fragments — known as vestoids — that were shaken loose when Vesta was bombarded by smaller asteroids.

The team concluded it was unlikely the bright rocks formed on Bennu itself, because pyroxene forms at extremely high temperatures. Bennu's rocks, which contain mostly water-bearing minerals, wouldn't have experienced those kind of temperatures.

A powerful impact also couldn't have resulted in those temperatures, either. In fact, such an impact would've ended up breaking up Bennu.

It wouldn't be the first time astronomers have spotted bits of one asteroid on the surface of another. For instance, the Japanese space agency's Hayabusa 2 spacecraft [spotted darker material](<https://www.nature.com/articles/d41586-018-05544-9>) from an "S-type" asteroid on the much darker "C-type" asteroid Ryugu in 2018.

Thanks to the discovery, scientists could glean details about Bennu's trajectory — the way the rock's orbit is affected by factors including gravitational forces from nearby planets and tiny asteroid impacts.

"Future studies of asteroid families, as well as the origin of Bennu, must reconcile the presence of Vesta-like material as well as the apparent lack of other asteroid types," Dante Lauretta, OSIRIS-REx principal investigator at the University of Arizona in Tucson, said in the statement.

If everything goes according to plan, OSIRIS-REx will make its first sample taking attempt in October and drag it all the way back to Earth in 2023.

"We look forward to the returned sample, which hopefully contains pieces of these intriguing rock types," Lauretta added.

**READ MORE:** [NASA’s OSIRIS-REx to Asteroid Bennu: “You’ve got a little Vesta on you…”](<https://www.nasa.gov/feature/goddard/2020/bennu-vesta-meteorites>) \[NASA\]

**More on OSIRIS-REx:** *[NASA Probe Exploring Asteroid Accidentally Snaps Black Hole Image](<https://futurism.com/the-byte/nasa-probe-exploring-asteroid-snaps-black-hole-image>)*

## Author
I've been at Futurism since 2017, where my role has evolved to encompass design, writing, and increasingly editing. I've always been fascinated by space exploration and advanced transportation, which I've leaned into by interviewing luminaries in those fields while closely following the dimensions of policy and regulation that allow next-generation projects to succeed -- or, sometimes, to fail. I'm also keenly interested in the effects of generative AI on society, policies, and democratic institutions, as well as clean energy, physics and biology, and the vagaries of tech leadership. My work for Futurism has been cited by publications including Ars Technica, Gizmodo, PC Magazine, Jalopnik, Fox News, and the New York Post. I spent my childhood living in locations including Manila, the Philippines, and Geneva, Switzerland, attended McGill University, and now live in Toronto, Canada. Before Futurism I worked at AskMen and a small photography studio. In my free time, I'm an avid gardener, foodie, and craft beer lover, as well as a maker of artisanal hot pepper sauces. I have a magnificent dog named Freida.

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