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Essay on Asteroid Sample Return Missions

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Although the record of successfully completed asteroid sample return missions is not very extensive, the so-far completed pioneering missions will pave the path for future generations of space scientists and engineers. By examining the history of these missions as well as the technology that made them possible, scientists can deepen their knowledge of other celestial bodies. Additionally, humanity may be able to discover how life originated on Earth and how it may be present elsewhere in our Solar System.

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Introduction

Although the record of successfully completed asteroid sample return missions is not

very extensive, the so-far completed pioneering missions will pave the path for future

generations of space scientists and engineers. By examining the history of these missions as well

as the technology that made them possible, scientists can deepen their knowledge of other

celestial bodies. Additionally, humanity may be able to discover how life originated on Earth and

how it may be present elsewhere in our Solar System.

History

The first spacecraft to return pristine samples from an asteroid back to Earth was the

Hayabusa spacecraft developed by the Japanese Aerospace Exploration Agency (JAXA).

Launched on May 9th, 2003, Hayabusa’s mission was to rendezvous with and collect samples

from the small near-Earth asteroid named 25143 Itokawa (Siddiqi, 2018). 857 days after its

launch, Hayabusa arrived at Itokawa, reaching a distance of 20 km from the asteroid (JAXA,

2010). Among Hayabusa’s instrumentation was also a MINERVA (Micro/Nano Experimental

Robot Vehicle for Asteroid) rover developed by the Institute of Space and Astronautical Science

(ISAS), which was deployed on November 12, 2005. Unfortunately, the deployment command

reached Hayabusa when it was at a higher altitude from Itokawa than intended, resulting in

MINERVA escaping Itokawa’s gravitational influence and drifting off into space (Siddiqi, 2018).

8 days after this deployment, Hayabusa executed a successful soft landing and collected a

material sample. 1666 days later, Hayabusa jettisoned the heat-shielded sample capsule just a

few hours before reentering Earth’s atmosphere. Although the main spacecraft burned up during

reentry (planned), the capsule landed in the Woomera Test Range in South Australia via

, parachutes. The next day, the capsule containing 1,500 grains of rock from Itokawa was

retrieved, completing the 7-year, 1 month, and 4-day long mission (Siddiqi, 2018).

On December 3, 2014, JAXA launched Hayabusa’s successor: Hayabusa2, whose

mission was to return samples from the near-Earth asteroid 162173 Ryugu. 1667 days after

launch, Hayabusa2 arrived at Ryugu, where it spent the next 504 days of its lifespan (departing

on November 13, 2019) surveying Ryugu, deploying rovers to its surface, and collecting samples

(JAXA, 2018). If the original Hayabusa’s MINERVA rover had successfully deployed on

Itokawa, it would have been the first mission where a spacecraft deployed an operational rover

onto an asteroid. However, Hayabusa2 accomplished this by successfully deploying several

rovers on the surface of Ryugu.

On February 21, 2019, Hayabusa2 collected its first sample from the asteroids surface

and 140 days later, collected another sample from underneath the asteroids surface. 389 days

after departure from Ryugu, the samples were successfully delivered back to Earth in a similar

manner to Hayabusa, concluding its initial mission (JAXA, 2018). However, instead of burning

up during atmospheric reentry, Hayabusa2 instead flew past Earth to visit new targets, using

leftover propellant, as part of a mission extension that will last at least through 2031.

In collaboration with NASA, JAXA is sharing a portion of their Ryugu samples in

exchange for a portion of samples from another near-Earth asteroid named 101955 Bennu,

collected by the most recent asteroid sample return mission to date: OSIRIS-REx (Origins,

Spectral Interpretation, Resource Identification, and Security-Regolith Explorer), which returned

samples from Bennu on September 24, 2023 (Donaldson, 2023). Before 2023, China plans to

join NASA and JAXA in successful asteroid sample return with the launch of mission Tianwen-2

(originally designated ZhengHe). The mission’s primary objective will be to collect 200-1000g

Document information

Uploaded on
July 24, 2026
Number of pages
9
Written in
2023/2024
Type
Essay
Professor(s)
Unknown
Grade
A
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