Tianwen-3 2028 Mars sample return mission with HK-made instruments

Author︰Huang Haoyi
Introduction
Hong Kong is fully promoting innovation and technology, with various technologies rapidly emerging in fields such as education and healthcare, construction and transport, aerospace, and industrial production, driving social progress and improving the quality of life. What is the progress of Hong Kong's innovation and technology development? What are the new breakthroughs?

In recent years, Hong Kong has had many scientific research achievements, some of which have entered daily life, while others have flown into space, participating in national space exploration missions.

On 24 April 2026, the China National Space Administration announced that the first Mars sample-return mission, "Tianwen-3", launching in 2028, will include among its collaborative projects scientific instruments lead-developed by the University of Hong Kong and The Chinese University of Hong Kong respectively, responsible for observing important data of the Martian surface and atmosphere.

The selection of these scientific research achievements also represents Hong Kong's scientific research capabilities entering the core of the national space exploration programme.

HKU: Mars surface hyperspectral imager searching for life traces 

Tianwen-3 is scheduled to launch in 2028 and return with samples to Earth in 2031. It is the China's first Mars sample return mission, with the main purpose of attempting to find answers to major scientific questions such as "Is life unique to Earth?" and "Are the biochemical mechanisms of life universal?".

Lead-developed by the Department of Earth and Planetary Sciences at HKU, the "Mars Surface Hyperspectral Imager" has been selected to be carried on the Tianwen-3 service module. It will capture images of the Martian surface and break down each pixel into a detailed spectrum to identify different minerals and chemical compositions.

When Tianwen-3 is launched in 2028, the orbiter will carry three collaborative payloads: (first to third from left) the Committee on Space Research's Mars PEX Spectrometer, Macao University of Science and Technology's Mars Molecular and Ionic Composition Analyser, and CUHK's Laser Heterodyne Spectrometer. The service module will carry HKU's Mars Surface Hyperspectral Imager (shown in the box, second from left), while the lander will carry the Italian National Institute for Nuclear Physics's Laser Retroreflector Array (first from right). (Image Source: The University of Hong Kong website)
The Mars Surface Hyperspectral Imager is the first payload instrument lead-developed by HKU and carried on a Mars exploration mission, led by the team of Professor Li Yiliang from the Department of Earth and Planetary Sciences at HKU, in collaboration with units such as Zhejiang University and the Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences. The instrument will search for traces of life on Mars and survey for resources such as hydrous minerals. (Image Source: The University of Hong Kong website)
The Mars Surface Hyperspectral Imager, lead-developed by HKU, will monitor the potential formation and evolution of Martian dust storms. (Image Source: VCG)

In the Tianwen-3 mission, the Mars Surface Hyperspectral Imager is responsible for three important tasks:

One, to monitor the potential formation and evolution of dust storms, thereby guiding the selection of a site with the highest scientific value for the lander to land safely.

Second, to map the detailed, high spatial resolution mineral distribution of candidate landing zones to support the final landing site selection for Tianwen-3.

Third, after the sample return mission is completed, the Mars Surface High-Resolution Hyperspectral Imager will remain in orbit and is expected to conduct continuous observations of the low-latitude regions of Mars for at least five years, tracking resource distribution and topographical changes.

Therefore, the imager developed by HKU is not for a one-off mission, but will become an important tool for future Martian exploration and resource assessment.

  Read more: Tianwen-3 to Launch in 2028 to Bring Back Martian Soil

CUHK: Laser heterodyne spectrometer to detect water and wind on Mars

Corresponding to HKU's responsibility for "observing the surface", the Laser Heterodyne Spectrometer, developed by a team led by CUHK in collaboration with the Hefei Institutes of Physical Science, Chinese Academy of Sciences, and the Macao University of Science and Technology, focuses on water and wind in the Martian atmosphere.

The Laser Heterodyne Spectrometer led by CUHK is used to carry out detection of the atmospheric water isotope profile distribution and wind fields on Mars. (Image generated by AI)

The instrument is used for high-precision, wide-coverage detection of Martian atmospheric water vapour and its isotopes, as well as the detection of global atmospheric wind fields on Mars.

Thereby, it can reveal the escape mechanism and evolutionary history of water on Mars, the characteristics and evolutionary mechanisms of Martian atmospheric wind fields, and deepening the understanding of Martian atmospheric circulation and climate evolution.

CUHK, the Hefei Institutes of Physical Science of the Chinese Academy of Sciences, and Macao University of Science and Technology have collaborated to establish the "Joint Laboratory for Deep Space Spectroscopic Detection of Material Composition" and have initiated the development of the "Laser Heterodyne Spectrometer" payload for Tianwen-3. (Image Source: CUHK website)

The fact that Tianwen-3 will carry payloads developed in Hong Kong by two local universities is undoubtedly a high recognition of Hong Kong's scientific research capabilities. This will help Hong Kong to continue playing a key role as a payload provider in future space exploration.

Coupled with the launch of an astronaut from Hong Kong, it is expected that Hong Kong's path in aerospace development through innovation and technology will become increasingly brilliant and yield remarkable results.

(Cover image generated by AI)

  Read more: Team from PolyU contributes to national aerospace projects

  Read more: "Exploring Technology, Hong Kong's Innovation Vitality": The innovation and technology stories of Hong Kong residents

 

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