BepiColombo Just Completed its Sixth Flyby of Mercury. Here are the Best Images

Bepicolumbo images of Mercury.

It’s not unusual for space probes to complete gravitational flyby manoeuvres en route to their destination. It’s a bit more unusual when the flyby is at the destination planet. ESA’s BepiColombo spacecraft is manoeuvring around Mercury into its final orbit. With each flyby it gets closer and closer and closer until its finally captured by Mercury’s gravity in 2026. During the latest flyby, stunning images of the nearest planet to the Sun were captured from just a few hundred km. Checkout the best and most stunning images of Mercury yet. 

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Planets Can Form in Even the Harshest Conditions

Artist concept of planet formation occuring in harsh stellar environments. Credit: NSF/AUI/NSF NRAO/S.Dagnello.

According to the most widely held astronomical model (the Nebular Hypothesis), new stars are born from massive clouds of dust and gas (aka. a nebula) that experience gravitational collapse. The remaining dust and gas form a protoplanetary disk that encircles the new star, which slowly accretes to form systems of planets. For the past decade, astronomers have relied on the Atacama Large Millimeter/submillimeter Array (ALMA) in Chile to study young stars and their disks and learn more about how this process occurs.

In a recent study, an international team of astronomers used ALMA to capture high-resolution images of eight protoplanetary disks in the Sigma Orionis cluster, a group of stars located in the constellation Orion. During their observations, the team found evidence of gaps and rings in most of the disks, which are potential indications that giant planets are forming. This was surprising, seeing as how these disks are irradiated by intense ultraviolet (UV) radiation from a massive star in the cluster. Their findings suggest that planet formation can occur in conditions that were previously thought to be inhospitable.

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Could We Detect Advanced Civilisations by their Industrial Pollution? Probably Not.

The MAIA satellite mission, a partnership between NASA and Italy's Agenzia Spaziale Italiana (ASI), will investigate the effects of particulate matter air pollution on human health. Suicup/Wikimedia Commons, CC BY-SA 3.0

The hunt for aliens goes hand in hand with the hunt for habitable planets. Astronomers are on the hunt for exoplanets with atmospheric chemicals that could be a sign of an advanced civilisation. These chemicals, known as technosignatures are found on Earth and are the result of burning fossil fuels. A team of researchers have been exploring Polycyclic Aromatic Hydrocarbons and whether they could detect them.

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Protecting Computers from Space Radiation

Radiation Tolerant Computer, or RadPC

Computers are an integral part of space exploration, keeping them functioning when away from Earth. The space environment however is a far from ideal environment for them to operate in. High energy particles can even flip memory bits effecting storage and damaging the computers. NASA are now testing a Radiation Tolerant Computer (RadPC) which has been designed to handle higher levels of radiation. It’s inaugural flight is booked on a trip to the Moon as part of the Firefly Aerospace Blue Ghost 1 Lunar Lander. 

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NASA is Sending a Vacuum Cleaner to the Moon

The Lunar Planet Vac, or LPV, is one of 10 payloads set to be carried to the Moon by the Blue Ghost 1 lunar lander in 2025. Credit: Firefly Aerospace

By the end of this decade, NASA, the Chinese National Space Agency (CNSA), Roscosmos, and other space agencies plan to establish a sustained human presence on the Moon. A crucial aspect of these plans is using local resources (particularly water) to lessen dependence on Earth, a process known as in-situ resource utilization (ISRU). Hence why NASA plans to establish a base of operations around the lunar south pole, a heavily cratered region where water ice exists in abundance in permanently shadowed regions (PSRs).

To harvest water ice and other resources successfully, NASA is investing in technologies that will enable cost-effective sample collection, in-situ testing (with or without astronaut oversight), and real-time data transmission to Earth. One such technology is the Lunar PlanetVac (LPV), a sample acquisition and delivery system designed to collect and transfer lunar regolith to sample containers without reliance on gravity. The LPV is one of 10 payloads that will be flown to the lunar surface as part of NASA’s Commercial Lunar Payload Services (CLPS) program.

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It's Time for Sustainable Development Goal for Space

The destruction of a single satellite could be catastrophic for our orbital endeavours. Image Credit: ESA

In 2015, the United Nations adopted the 2030 Agenda for Sustainable Development—the Sustainable Development Goals (SDGs)—a universal call to action to protect the planet for future generations and ensure that all people will enjoy peace and prosperity. These 17 goals included the elimination of poverty, hunger, and inequalities, the promotion of education, and the promotion of sustainable development worldwide. With the rapid development in Low Earth Orbit (LEO), there are growing concerns that an 18th SDG should be adopted for space.

This goal calls for the sustainable use of Earth’s orbit by space agencies and commercial industry and the prevention of the accumulation of space junk. This has become a growing problem in recent years thanks to the deployment of satellite mega-constellations and the “commercialization of LEO.” In a recent study led by the University of Plymouth, a team of experts outlined how the lessons learned from marine debris mitigation could be applied to space so that future generations can live in a world where space truly is “for all humanity.”

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A New Industrial Megaproject Threatens the View of the World’s Best Observatories

The dark skies above ESO’s Paranal Observatory, home to ESO’s Very Large Telescope (VLT), yield breathtaking views so clear and so full of stars that you could almost touch them. Standing atop a platform at VLT, ESO Photo Ambassador Petr Horálek reaches towards a standout object in the sky. You may assume this bright body, like many others in the sky, to be a star, but it is in fact a planet in our Solar System: the gas giant Jupiter. Closer to Earth, the four Unit Telescopes (UTs) that comprise the VLT can be seen in the background. Each UT features an 8.2-metre mirror and they operate synergistically to produce some of the sharpest views of the Universe. Accompanying the four UTs are four smaller, moveable Auxiliary Telescopes (ATs) which have 1.8-metre mirrors.  The Chilean Atacama desert once again proves its value as the ideal location for ESO’s VLT. The remoteness of the observatory means that there is very little to no light pollution, which is vital for astronomy and also yields such breathtaking views.

Astronomers have been battling threats to their clear skies on all fronts lately. One of the most notable battles, which we have reported on repeatedly, is the one against Starlink and other mega-constellations of satellites, which, while they offer high-speed internet in the most far-flung places, also disrupt observations by sensitive telescopes due to their reflectivity and fast movement speed. They also pose a global problem, whereas a more down-to-earth issue is cropping up at one very special observatory. A vast industrial plant threatens the European Southern Observatory’s Paranal telescope planned only a few kilometers from the site.

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The Cosmos is Waiting for us to Explore. But we Should Choose our Path Wisely.

Lunar gateway. Credit: NASA

If you were Captain of the first USS Enterprise, where would you go!? Humanity is on the cusp of reaching out among the stars, maybe not just yet, nor in our lifetimes but it is just around the corner cosmologically speaking. A new paper explores the new technology that could make it a reality but also carefully considers the ethical aspects. Before we make the first journeys we need to be clear about the ethical considerations too so that our exploration is sustainable and responsible.

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The Moon Occults Mars for North America Monday Night, Just Before Opposition 2025

Now is the best time to observe Mars in 2025.

Mars
Mars from 2014. Credit: Paul Stewart.

January has an amazing parade of evening planets, well worth braving the cold for. We have brilliant Venus, high to the west after sunset, reaching greatest elongation on January 10th. Fainter Saturn sits just above Venus as the two meet on January 19th. Meanwhile, Jupiter dominates the eastern sky, fresh off of opposition in December. But stay awake just a bit longer after dusk, and you can see Mars rising in the east.

As a special treat, observers in most of North America will also see the nearly Full Moon pass in front of Mars Monday night.

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