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101955 Bennu

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A detailed image of asteroid Bennu taken by NASA's OSIRIS-REx spacecraft during its mission to study the asteroid.

101955 Bennu

101955 Bennu (provisional designation 1999 RQ36) is a carbonaceous asteroid in the Apollo group. It was found by the LINEAR Project on 11 September 1999. Scientists think Bennu might come close to Earth in the future, so it is important to study.

Bennu is named after Bennu, an ancient Egyptian mythological bird linked to the Sun, creation, and new beginnings.

Bennu is about 490 meters wide, roughly the size of a big football field. It has been studied using special telescopes like the Arecibo Observatory and the Goldstone Deep Space Network.

The asteroid was the focus of the OSIRIS-REx mission. This spacecraft was launched in September 2016 and reached Bennu two years later. It mapped the asteroid's surface to find a good spot to collect samples. In October 2020, OSIRIS-REx touched Bennu's surface and gathered material. The sample was brought back to Earth in September 2023, and scientists are still learning from this space treasure.

Discovery and observation

Bennu was found on September 11, 1999, when scientists looked for space rocks close to Earth. It was given a special name, 1999 RQ36, and was called a near-Earth asteroid. Scientists watched Bennu with special cameras at the Arecibo Observatory and the Goldstone Deep Space Network when it passed close to Earth on September 23, 1999.

Naming

Series of Goldstone radar images in 1999 showing Bennu's rotation

The name Bennu was picked from thousands of ideas sent in by students all over the world. They were part of a contest called "Name that Asteroid!" organized by the University of Arizona, The Planetary Society, and the LINEAR Project in 2012. A third-grade student named Michael Puzio from North Carolina suggested the name after the Egyptian bird Bennu. He thought the OSIRIS-REx spacecraft, with its long TAGSAM arm, looked like this bird.

The features of Bennu are named after birds and bird-like creatures from myths.

Physical characteristics

Bennu looks like a spinning top and spins in the opposite direction to its orbit. Its surface is covered with big rocks, the largest being about 58 meters across. These rocks have lines of minerals formed by water that once flowed on a larger object from which Bennu came.

Bennu has a ridge around its middle where tiny particles have gathered because it spins fast—about once every 4.3 hours. Scientists have found that Bennu is spinning faster over time because of how it releases heat while moving through sunlight.

Observations show Bennu is about 484 meters wide and is very dark. Its inside is loose and porous, like a pile of rubble. Bennu contains water in its minerals, which was detected before the spacecraft reached it. Scientists believe Bennu holds a lot of water, possibly up to 1% of its weight.

Photometry and spectroscopy

Observations showed Bennu spins every 4.29 hours and is a type of carbon-rich asteroid. It has special minerals that usually form when water is present.

The final four candidate OSIRIS-REx sample sites

Water

Scientists say Bennu is rich in water. Before reaching it, they could already detect water from far away. The spacecraft confirmed this and estimated Bennu may hold a large amount of water—enough to make up about 1% of its weight. This water might be hidden just below the surface.

Activity

Bennu sometimes shoots out small rocks and particles. Scientists think this happens because of heat cracking the surface, water escaping, or small space rocks hitting it.

Surface features

All the features on Bennu are named after birds or bird-like figures from myths. The place where scientists collected samples was named Nightingale, after a type of bird. This spot was chosen because it looked fresh and safe for the spacecraft to land.

Map of Bennu showing the locations of the IAU-named surface features
Final four OSIRIS-REx candidate sample sites
NameLocationDescription
Nightingale56°N 43°EAbundant fine-grained material with a large variation in color. Primary sample collection site.
Kingfisher11°N 56°EA relatively new crater with the highest water signature of all four sites.
Osprey11°N 80°ELocated on a low albedo patch with a large variety of rocks. Backup sample collection site.
Sandpiper47°S 322°ELocated between two young craters, located in rough terrain. Minerals vary in brightness with hints of hydrated minerals.
Craters
NameCoordinatesDiameter (m)Approval DateNamed After
Alicanto0.08°S 111.93°E6118/12/2020Alicanto, bird from Chilean mythology who has glowing wings due to eating metal ores, which make it incapable of flying
Bralgha44.36°S 324.99°E6918/12/2020Crane who tossed an egg from Dinewan’s nest into the sky, becoming the Sun
Dinewan41.4°S 323.7°E1018/12/2020Emu whose egg became the Sun
Hokioi55.07°N 41.78°E2818/12/2020Maori bird who was sometimes heard but was never seen
Huhuk1.12°S 152.3°E7518/12/2020Pawnee thunderbird whose beatings of its wings caused thunder
Lilitu26.13°S 115.36°E2818/12/2020Mesopotamian demon who took the form of a woman with wings and bird feet
Minokawa8.79°S 269.1°E181.118/12/2020Minokawa bird who was believed to be large enough to devour the Sun, which explained solar eclipses
Ohnivak4.23°S 125.67°E4118/12/2020Czech/Slovak firebird with red, orange, and gold feathers
Pegasus23.53°N 329.93°E1418/12/2020Pegasus, winged horse in greek mythology
Sampati19.02°S 97.34°E1118/12/2020Sampati, demigod from hindu mythology who takes the form of either an eagle or vulture
Wuchowsen11.78°N 88.13°E2018/12/2020Giant bird from Algonquian mythology whose name means “Windblower”, which produces wind with its wings
Wututu17.03°S 84.34°E1318/12/2020Bird who ended a dispute between two gods, ending a great drought
Regiones
NameCoordinatesDiameter (m)Approval DateNamed After
Tlanuwa Regio37.86°S 261.70°E30131/01/2020Tlanuwa, giant birds from Cherokee mythology
Saxa
NameCoordinatesDiameter (m)Approval DateNamed After
Aellopus Saxum25.44°N 335.67°E5.726/03/2020Aello, one of the half-bird half-woman Harpy sisters from Greek mythology
Aetos Saxum3.46°N 150.36°E9.131/01/2020Aetos, childhood playmate of the god Zeus who was turned into an eagle from Greek mythology
Amihan Saxum17.96°S 256.51°E3331/01/2020Amihan, bird deity from Philippine mythology
Benben Saxum45.86°S 127.59°E5231/01/2020Benben, Ancient Egyptian primordial mound that arose from the primordial waters Nu
Boobrie Saxum48.08°N 214.28°E3026/03/2020Boobrie, shapeshifting entity from Scottish mythology that often takes the form of a giant water bird
Camulatz Saxum10.26°S 259.65°E2226/03/2020Camulatz, one of four birds in the K'iche' creation myth in Maya mythology
Celaeno Saxum18.42°N 335.23°E826/03/2020Celaeno, one of the half-bird half-woman Harpy sisters from Greek mythology
Ciinkwia Saxum4.97°S 249.47°E2126/03/2020Ciinkwia, thunder beings from Algonquian mythology that look like giant eagles
Dodo Saxum32.68°S 64.42°E2726/03/2020Dodo, a dodo bird character from Alice's Adventures in Wonderland
Gamayun Saxum9.86°N 105.45°E1926/03/2020Gamajun, prophetic bird from Slavic mythology
Gargoyle Saxum4.59°N 92.48°E1831/01/2020Gargoyle, dragon-like monster with wings
Gullinkambi Saxum18.53°N 17.96°E3126/03/2020Gullinkambi, rooster from Norse mythology that lives in Valhalla
Huginn Saxum29.77°S 43.25°E4631/01/2020Huginn, one of two ravens that accompany the god Odin in Norse mythology
Kongamato Saxum5.03°N 66.31°E1926/03/2020Kongamato, giant flying creature from Kaonde mythology
Muninn Saxum29.34°S 48.68°E2831/01/2020Muninn, one of two ravens that accompany the god Odin in Norse mythology
Ocypete Saxum25.09°N 328.25°E5.631/01/2020Ocypete, one of the half-bird half-woman Harpy sisters from Greek mythology
Odette Saxum44.86°S 291.08°E1926/03/2020Odette, princess that turns into the White Swan in Swan Lake
Odile Saxum42.74°S 294.08°E2526/03/2020Odile, the Black Swan from Swan Lake
Pouakai Saxum40.45°S 166.75°E10.611/02/2020Poukai, monstrous bird from Maori mythology
Roc Saxum23.46°S 25.36°E9631/01/2020Roc, giant bird of prey from Arabic mythology
Simurgh Saxum25.32°S 4.05°E4031/01/2020Simurgh, benevolent bird that possesses all knowledge from Iranian mythology
Strix Saxum25.32°S 4.05°E5.331/01/2020Strix, bird of ill omen from Classical mythology
Thorondor Saxum13.40°N 88.26°E6126/03/2020Thorondor, the King of the Eagles in Tolkien's Middle-earth

Origin and evolution

Bennu is made from a big object that broke apart. Its materials came from old stars that died, called red giants and supernovae. This material came together 4.5 billion years ago when our Solar System formed.

Bennu's makeup was set in the first 10 million years of the Solar System. It likely started in the inner asteroid belt. Bennu has been near Earth for about 1–2.5 million years. Its path changed because of big planets like Jupiter and Saturn, and a natural effect called the Yarkovsky effect. Some scientists think Bennu might have come from a comet.

Orbit

Bennu goes around the Sun once every 1.19 years. Sometimes Earth comes very close to Bennu's path, getting as near as about 480,000 kilometers. Bennu passed close to Earth in 1999 and 2005. The next very close passes will be in 2054 and 2060, and these could change Bennu's path a little.

Possible Earth impact

Diagram of the orbits of Bennu and the inner planets around the Sun

Bennu is a big space rock. Scientists have looked at how likely it is to hit Earth. Early studies thought there might be a small chance of Bennu hitting Earth between 2169 and 2199. Later studies gave better estimates. The chance of Bennu hitting Earth between 2175 and 2196 was estimated to be about 0.037%. If it did hit Earth, it would release a lot of energy.

The latest studies went up to the year 2300 and changed the risk rating a little. Bennu's path is affected by the gravity of many other asteroids.

2060/2135 close approaches

In 2060, Bennu will pass very close to Earth—about 750,000 kilometers away. This is much closer than the Moon. In 2135, Bennu will come even closer to Earth, but there is no chance it will hit us then. This close pass in 2135 might change Bennu's path in ways that could affect future close approaches.

Animation of 101955 Bennu's position relative to the Earth, as both orbit the Sun, in the years 2128 to 2138. 2135 close approach is shown near the end of the animation.   Earth ·   101955 Bennu

2182

The biggest possible chance of Bennu hitting Earth is on September 24, 2182, with about a 1 in 2,700 chance. Bennu would need to pass through a very small area in space during its 2135 approach for this to happen. There are also small chances in 2187 and 2192. Overall, there is about a 1 in 1,800 chance Bennu could hit Earth between 2178 and 2290.

Long term

Scientists used computer simulations to study Bennu's path far into the future. They found Bennu is likely to eventually fall into the Sun, with about a 48% chance. There is also a chance it could be thrown out of the inner solar system, or hit another planet like Venus or Earth.

Meteor shower

Bennu might be the source of a weak meteor shower that happens around September 25 each year. The meteors would be hard to see and would only appear once in an hour or so.

Bennu approaches less than 0.05AU
Position uncertainty and increasing divergence
DateJPL SBDB
nominal geocentric
distance (AU)
uncertainty
region
(3-sigma)
2054-09-300.039299 AU (5.8790 million km)±7 km
2060-09-230.005008 AU (749.2 thousand km)±5 km
2080-09-220.015630 AU (2.3382 million km)±3 thousand km
2135-09-250.001364 AU (204.1 thousand km)±20 thousand km
(virtual impactor)
2182-09-24
≈0.3 AU (40 million km) (Gravity Simulator)
1.1 AU (160 million km) (NEODyS)
±370 million km
Asteroids of absolute magnitude less than 21 passing less than 1 lunar distance from Earth
AsteroidDateNominal approach distance (LD)Min. distance (LD)Max. distance (LD)Absolute magnitude (H)Size (meters)
(152680) 1998 KJ91914-12-310.6060.6040.60819.4279–900
(458732) 2011 MD51918-09-170.9110.9090.91317.9556–1795
(163132) 2002 CU111925-08-300.9030.9010.90518.5443–477
2017 VW132001-11-080.3730.3163.23620.7153–494
(153814) 2001 WN52028-06-260.6470.6470.64718.2921–943
99942 Apophis2029-04-130.09890.09890.098919.7310–340
2005 WY552065-05-280.8650.8560.87420.7153–494
101955 Bennu2135-09-250.5310.5070.55520.19472–512
(153201) 2000 WO1072140-12-010.6340.6310.63719.3427–593

Exploration

OSIRIS-REx

Main article: OSIRIS-REx

The successful October 2020 sample collection, showing OSIRIS-REx touching down on the Nightingale sample site

The OSIRIS-REx mission, part of NASA's New Frontiers program, was launched on 8 September 2016 to visit the asteroid Bennu. After two years, the spacecraft reached Bennu on 3 December 2018. Scientists found signs that liquid water may have once been on Bennu.

In October 2020, OSIRIS-REx touched the asteroid and collected samples. The spacecraft left Bennu in April 2021 and brought the samples back to Earth. On 24 September 2023, the samples landed in Utah. Scientists began studying the material and found interesting substances.

Selection

Bennu was chosen for the OSIRIS-REx mission because it is close to Earth and has the right conditions for a sample-return mission. It has loose material on its surface and may contain important carbon materials from the early Solar System.

Returned samples

In September 2023, OSIRIS-REx returned about 120 grams of material from Bennu. The samples are dark and contain various particles, from tiny dust to small rocks. Scientists found hydrated minerals and organic compounds. These discoveries help us learn more about Bennu and the early Solar System.

Images

An image of asteroid Bennu in space, showing particles being ejected from its surface, captured by NASA's OSIRIS-REx spacecraft.
Scientists observed asteroid Bennu shooting particles into space—this image from NASA’s OSIRIS-REx spacecraft shows the event.
NASA images show detailed views of asteroid Bennu's rocky surface, including large boulders and a smooth regolith area captured by the OSIRIS-REx spacecraft.
A NASA spacecraft captured this image of asteroid Bennu's rocky surface, showing large boulders and the rough terrain of this distant space rock.
A NASA spacecraft lands on the surface of asteroid Bennu during the OSIRIS-REx mission to collect samples for science.
Animation showing the path of the OSIRIS-REx spacecraft as it travels from Earth to asteroid 101955 Bennu and back.
Animation showing the path of the OSIRIS-REx spacecraft as it orbits the asteroid 101955 Bennu.
Animation showing the OSIRIS-REx spacecraft as it approaches and touches down on the asteroid Bennu, part of a NASA mission to collect samples from space.

Related articles

This article is a child-friendly adaptation of the Wikipedia article on 101955 Bennu, available under CC BY-SA 4.0.

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