Ramses - ESA Mission to the Apophis Asteroid

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30 years ago, on 16 July 1994, astronomers watched in awe as the first of many pieces of the Shoemaker-Levy 9 comet slammed into Jupiter with incredible force. The event sparked intense interest in the field of planetary defence as people asked: “Could we do anything to prevent this happening to Earth?”

Today, ESA’s Space Safety programme takes another step towards answering this question. The programme has received permission to begin preparatory work for its next planetary defence mission – the Rapid Apophis Mission for Space Safety (Ramses).

Ramses will rendezvous with the asteroid 99942 Apophis and accompany it through its safe but exceptionally close flyby of Earth in 2029. Researchers will study the asteroid as Earth’s gravity alters its physical characteristics. Their findings will improve our ability to defend our planet from any similar object found to be on a collision course in the future.

Apophis
Roughly 375 m across, about the size of a cruise liner, the asteroid Apophis will pass within 32 000 km from Earth’s surface on 13 April 2029. For a short time, it will be visible to the naked eye in clear, dark skies for around two billion people across much of Europe and Africa and parts of Asia.

Apophis will miss Earth: astronomers have ruled out any chance that the asteroid will collide with our planet for at least the next 100 years. But the Apophis flyby in April 2029 is an extremely rare natural phenomenon.

By analysing the sizes and orbits of all known asteroids, astronomers believe that an object this large comes this close to Earth only once every 5000 to 10 000 years. For comparison, a total solar eclipse takes place somewhere on Earth around once every 18 months, and Comet Halley returns to Earth’s skies every 76 years.

The 2029 Apophis flyby will draw the attention of the entire world and represents a unique opportunity for science, planetary defence and public engagement.

Ramses
ESA’s Ramses spacecraft will rendezvous with Apophis before it passes Earth and accompany the asteroid during the flyby to observe how it is warped and changed by our planet’s gravity.

Patrick Michel Director of Research at CNRS at Observatoire de la Côte d'Azur in Nice, comments: "There is still so much we have yet to learn about asteroids but, until now, we have had to travel deep into the Solar System to study them and perform experiments ourselves to interact with their surface.”

“For the first time ever, nature is bringing one to us and conducting the experiment itself. All we need to do is watch as Apophis is stretched and squeezed by strong tidal forces that may trigger landslides and other disturbances and reveal new material from beneath the surface."

Ramses needs to launch in April 2028 to allow for an arrival at Apophis in February 2029, two months before the close approach. In order to meet this deadline, ESA requested permission to begin preparatory work on the mission as soon as possible using existing resources. This permission has been granted by the Space Safety programme board. The decision whether to commit to the mission in full will take place at ESA’s Ministerial Council Meeting in November 2025.

Using a suite of scientific instruments, the spacecraft will conduct a thorough before-and-after survey of the asteroid’s shape, surface, orbit, rotation and orientation. By analysing how Apophis changes during the flyby, scientists will learn a lot about the response of an asteroid to external forces as well as asteroid composition, interior structure, cohesion, mass, density, and porosity.

These are all very important properties for assessing how best to knock a hazardous asteroid off a collision course with Earth. As asteroids are also time capsules formed over four billion years ago, data from Ramses will also offer new scientific insights into the formation and evolution of the Solar System.

NASA, meanwhile, has redirected its OSIRIS-REx spacecraft towards Apophis. Due to the limits of orbital mechanics, the newly renamed OSIRIS-APEX will arrive at Apophis roughly one month after the asteroid’s Earth flyby.

Researchers anticipate Earth's tidal forces altering the asteroid’s rotational state and possibly triggering quakes and landslides. Having Ramses there in advance will provide a detailed 'before and after' view of how Apophis has been altered by its close encounter. Then, in the aftermath, having two highly capable spacecraft at Apophis after the flyby will enable additional scientific investigations and the measurement of longer-term effects.

Rapid reconnaissance: a cornerstone for planetary defence
The international collaboration between NASA’s DART asteroid impactor and ESA’s Hera asteroid detective is demonstrating that, in principle, humankind can redirect an asteroid if needed. But to react to a real hazard, we need to be able to build and deploy a response quickly.

Richard Moissl, heading ESA's Planetary Defence Office, explains: “Ramses will demonstrate that humankind can deploy a reconnaissance mission to rendezvous with an incoming asteroid in just a few years. This type of mission is a cornerstone of humankind’s response to a hazardous asteroid. A reconnaissance mission would be launched first to analyse the incoming asteroid’s orbit and structure. The results would be used to determine how best to redirect the asteroid or to rule out non-impacts before an expensive deflector mission is developed.”

Paolo Martino, leading ESA's Ramses effort, adds: "The Ramses mission concept reuses much of the technology, expertise and industrial and science communities developed for the Hera mission. Hera demonstrated how ESA and European industry can meet strict deadlines and Ramses will follow its example."

View: https://twitter.com/esa/status/1813167089340862849

Introducing Ramses, ESA’s mission to asteroid Apophis
 
ESA moves forward with Apophis mission preparations

ESA has signed a contract with OHB Italia SpA worth €63 million to begin preparatory work on the Agency’s proposed Ramses mission to the infamous asteroid Apophis.

ESA will propose such a mission for approval and funding at its next Ministerial Council Meeting in 2025 as the next Planetary Defence mission in its Space Safety Programme. The spacecraft will be based on an adaptation of Hera, ESA’s first asteroid mission, which successfully launched on 7 October 2024.

However, the Rapid Apophis Mission for Space Safety (Ramses) would need to launch in early 2028 in order to arrive at Apophis in time to study it as it passes Earth.
 
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ESA and JAXA advance potential Apophis mission collaboration

The Japan Aerospace Exploration Agency (JAXA) has requested funding to participate in the European Space Agency’s (ESA) Rapid Apophis Mission for Space Safety (Ramses).

Ramses is ESA’s proposed mission to rendezvous with the 375 m asteroid Apophis and accompany it through a safe but exceptionally close flyby of Earth in 2029.

The JAXA contributions to Ramses would include the provision of the spacecraft’s solar arrays and infrared imager, as well as a rideshare launch on a Japanese H3 launch vehicle.
 
This will be the first time a Japanese rocket will launch a European Space Agency probe. The ESA's Apophis observation probe "RAMSES," officially announced in August, will be riding alongside JAXA's "DESTINY+," which will replace Epsilon S. We explain how the mission came about.

H3 rocket launches first Japan-Europe collaborative mission to launch asteroid probe - Impress Watch https://www.watch.impress.co.jp/docs/topic/2047932.html

RAMSES was scheduled for April 2028.

https://www.esa.int/Space_Safety/Planetary_Defence/Ramses_ESA_s_mission_to_asteroid_Apophis
Ramses needs to launch in April 2028 to allow for an arrival at Apophis in February 2029, two months before the close approach.
 
View: https://twitter.com/esa/status/1973027871674220709


Today we heard confirmation that the Japanese government has taken a step closer towards formalising their contribution to launch ESA's RAMSES mission. Not only that, but the JAXA-led DESTINY+ explorer mission will launch with it and perform a fast flyby of Apophis before the arrival of RAMSES, helping with the latter's navigation to the asteroid.

JAXA remains one of ESA’s most important long-term strategic partners. As my friend and the President of JAXA Dr. Yamakawa put it: international collaboration is not possible without win-win solutions. And with JAXA: Japan Aerospace Exploration Agency, it's always a win-win.

DESTINY⁺

The deep space exploration technology demonstrator DESTINY⁺ (Demonstration and Experiment of Space Technology for INterplanetary voYage with Phaethon fLyby and dUst Science) will be launched into Earth's orbit by the Epsilon S rocket with an additional kick stage. It will then be accelerated by ion engines to increase its orbital altitude, and will eventually escape from the Earth by lunar swing-by.

[...]

Mass: 480 kg
Orbital altitude: Initial 230 km x 37000km, Electric propulsion acceleration and lunar swing-by to deep space
Orbital Inclination: Approximately 32 degrees

View: https://www.youtube.com/watch?v=_mqk_5L3H08


Friday the 13th of April 2029 will be our lucky day.

Apophis, a 375-metre-wide asteroid, will safely pass Earth at a distance of less than 32 000 kilometres. For a few hours, Apophis will be closer than satellites in geostationary orbit and visible to the naked eye from Europe and Africa.

Space agencies have sent a number of spacecraft to asteroids, but we have never had a mission at an asteroid as it sweeps past a planet. This grand natural experiment offers a unique opportunity to study in real time how an asteroid responds to a strong external force – and the European Space Agency aims to have a front-row seat.

To this end, ESA’s Space Safety Programme has proposed the Rapid Apophis Mission for Space Safety (Ramses). If approved, Ramses would launch a year ahead of the Apophis flyby, travelling through space to rendezvous with the asteroid months before its encounter with Earth.
 
ESA inaugurates deep space antenna in Australia [Oct. 4]

The European Space Agency (ESA) has expanded its capability to communicate with scientific, exploration and space safety missions across our Solar System with the inauguration of a new 35-m diameter deep space antenna – the fourth for Estrack, ESA’s deep space tracking network.

Started in 2021 and delivered on schedule, this construction is the result of the outstanding capabilities of ESA, European and Australian industry, and excellent cooperation with our Australian partners. When the new deep space antenna enters service in 2026, it will support ESA’s current flagship missions flown as part of the agency's scientific, exploration and space safety fleets, including Juice, Solar Orbiter, BepiColombo, Mars Express and Hera, and will be a critical enabler for upcoming missions including Plato, Envision, Ariel, Ramses and Vigil.
 
ESA awards contracts for Ramses mission to Apophis [Feb. 10]

On 10 February 2026, the European Space Agency (ESA) signed a contract with OHB Italia for the development of the Rapid Apophis Mission for Space Safety (Ramses). Launching in 2028, Ramses will rendezvous with the asteroid Apophis before its rare close encounter with Earth. The mission will provide unique insight into the physical properties and behaviour of asteroids, and strengthen international collaboration and European capabilities in planetary defence.

The contract, worth €81.2 million, was signed today by ESA and OHB Italia at ESA’s ESTEC technology centre in the Netherlands and begins the spacecraft construction, assembly and testing phase of the Ramses mission.

This builds upon the contract signed in October 2024 to begin preparatory work on the mission and brings the total value to approximately €150 million.

A second contract worth €8.2 million was signed today with Italy's Tyvak International for the construction of one of Ramses’ CubeSats, named Farinella after the Italian planetary scientist Paolo Farinella. As with the main Ramses spacecraft, this builds on an earlier contract worth €4.7 million awarded for preparatory work last year.

JAXA’s contributions include spacecraft components such as the solar arrays and thermal infrared imager, and a potential rideshare launch with JAXA’s Destiny+ mission. Japanese researchers also participate in Ramses’ scientific activities.

The Ramses Critical Design Review, conducted by ESA’s expert review board over the last few months, concluded on 6 February. It confirmed that the detailed design of the Ramses spacecraft meets all technical, scientific and programmatic requirements.

“Passing the Critical Design Review in record time gives us full confidence that Ramses’ design is mature, robust and ready to be built,” said Paolo Martino, Ramses mission manager.

“Successfully maintaining the mission’s accelerated pace is an endorsement of the team’s commitment and engineering vision under a very demanding schedule.”

With this critical milestone behind it, and the contract signed, the Ramses team will now focus on building, assembling and testing the flight spacecraft and its systems. Over the next year, hardware components such as the main spacecraft bus and payload instruments will be assembled and integrated.

This will be followed by rigorous environmental and functional tests to prepare the mission for its planned launch window in Spring 2028.

ESA and JAXA team up on planetary defence, Ramses mission to asteroid Apophis [May 7]

The European Space Agency (ESA) and the Japan Aerospace Exploration Agency (JAXA) have signed a Memorandum of Cooperation to deepen collaboration in planetary defence, alongside a dedicated agreement for collaboration on the Rapid Apophis Mission for Space Safety (Ramses) to the near-Earth asteroid Apophis.

The agreements were signed on 7 May by ESA Director General Josef Aschbacher and JAXA President Hiroshi Yamakawa at the Embassy of Italy in Berlin, Germany, in the presence of European and Japanese institutional and industrial leadership. The event was hosted in collaboration with the Italian Space Agency (ASI), in light of ESA’s selection of OHB Italia as prime contractor for the Ramses mission.

The move builds on a joint statement from November 2024, in which ESA and JAXA committed to expanding large-scale cooperation, including on planetary defence.

The first major outcome of the new ESA-JAXA cooperation is collaboration on the Ramses mission. Ramses will launch in 2028 and rendezvous with the asteroid (99942) Apophis ahead of its exceptionally rare, close flyby of Earth in April 2029.

ESA oversees the Ramses mission’s spacecraft design, integration and operations. JAXA will provide key elements, including the spacecraft’s lightweight solar arrays, an infrared imager, and launch aboard its H3 rocket. The partnership builds on JAXA’s contribution to Hera and ongoing collaboration on ESA-JAXA space missions such as EarthCARE and BepiColombo.
 
Advancing RAMSES: OHB Italia and HPS Sign MGA Agreement [May 26]

Today during the SmallSat Conference in Amsterdam, OHB Italia, acting as Prime Contractor for the RAMSES mission signed, in agreement with ESA, a contract with HPS GmbH, based in Munich, Germany, for the procurement of the RAMSES Medium Gain Antenna (MGA).

The Medium Gain Antenna is a key subsystem within the RAMSES spacecraft communication architecture. It will support the transmission of mission data and imagery back to Earth, contributing to the reliability of communications during asteroid proximity operations and to the overall scientific return of the mission.

Roberto Aceti, CEO of OHB Italia, commented:
“This contract further consolidates the cooperation between OHB Italia and HPS GmbH on advanced space systems. The Medium Gain Antenna is an important element of the RAMSES mission communication chain, and its development reflects the value of specialized European industrial capabilities in support of complex exploration missions.”

Ernst K. Pfeiffer, CEO of HPS GmbH, commented:
“It’s fantastic to be part of this exceptional mission, and it’s an honor that our hardware will be transmitting such fascinating data back to Earth. Images of the asteroid, perhaps even with Earth in the background, will be circulating around the world. It’s great that Germany confirmed its participation in this mission at ESA-CM25 last November; now SMEs can also contribute their high-tech equipment to the programme. With this contract, I am also delighted to further expand our cooperation with OHB Italia and with Roberto in this way.”
 
Surface CubeSat contracted for Ramses asteroid mission

The European Space Agency has contracted Spanish company EMXYS for the first CubeSat designed to operate on the surface of an asteroid. Don Quijote is a shoebox-sized spacecraft that will be deployed onto the Apophis asteroid by ESA’s Ramses mission before the asteroid flies by Earth on 13 April 2029.
 

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