SPHEREx: Mapping the Entire Sky in Infrared for Unprecedented Cosmic Insights

NASA’s SPHEREx (Spectrophotometer for the Exploration of the History of the Universe, Era of Reionization, and Ice) space telescope has successfully created the first comprehensive 102-color infrared map of the entire sky, utilizing observations collected from May to December 2025. While these 102 infrared wavelengths are invisible to the human eye, their widespread presence in the universe enables scientists to tackle significant questions, such as understanding monumental events on Earth. The milliseconds following the Big Bang profoundly influenced the 3D distribution of billions of galaxies. Furthermore, this invaluable data will aid in studying the evolution of galaxies over the universe’s 13.8 billion-year history and analyzing the distribution of essential life ingredients within our Milky Way galaxy.



This infrared image from SPHEREx features color emissions from stars (blue, green, and white), hot hydrogen gas (blue), and cosmic dust (red). Image credit: NASA/JPL-Caltech.

The Earth completes approximately 14.5 rotations in a single day. Spherex travels from north to south, crossing over both poles.

Each day, SPHEREx captures around 3,600 images along a defined circular path in the sky. As time progresses and the planets orbit the sun, SPHEREx’s observational field shifts accordingly.

After six months, the observatory managed to explore the cosmos, capturing a full 360 degrees of the sky.

NASA’s Jet Propulsion Laboratory in Southern California oversees this mission, which commenced sky mapping in May and achieved its inaugural all-sky mosaic in December.

Over its two-year primary mission, SPHEREx plans to conduct three additional all-sky scans, merging these maps to enhance measurement sensitivity.

Dr. Sean Domagal Goldman, director of the Astrophysics Division at NASA Headquarters, remarked, “It’s astounding that SPHEREx has gathered such a wealth of data in just six months. This information, combined with data from other missions, provides deeper insights into the universe.”

“We essentially have 102 new maps of the entire sky, each featuring distinct wavelengths and delivering unique information about celestial objects.”

“Astronomers will find valuable insights here, as NASA’s mission will facilitate answers to fundamental questions regarding the universe’s beginnings and its evolution, ultimately shedding light on our position within it.”

“SPHEREx is a medium-sized astrophysics mission delivering groundbreaking science,” stated Dave Gallagher, director of NASA’s Jet Propulsion Laboratory.

“This remarkable project exemplifies how bold ideas can transform into reality, unlocking immense potential for groundbreaking discoveries.”

Every one of the 102 colors detected by SPHEREx corresponds to a wavelength of infrared light, each of which conveys unique information about galaxies, stars, planet-forming regions, and other cosmic phenomena.

For instance, dense dust clouds in our galaxy, where stars and planets are born, shine brightly at specific wavelengths but remain completely invisible at others.

This separation of light into its component wavelengths is known as spectroscopy.

While prior missions, including NASA’s Wide-Field Infrared Surveyor, have mapped the entire sky, none have achieved the same diversity of colors as SPHEREx.

In contrast, the NASA/ESA/CSA James Webb Space Telescope can perform spectroscopy at significantly longer wavelengths than SPHEREx, but its field of view is thousands of times smaller.

The diversity of colors combined with a wide observational field is what renders SPHEREx exceptionally powerful.

“The true superpower of SPHEREx lies in its ability to capture the entire sky in 102 colors approximately every six months,” declared SPHEREx Project Manager Beth Fabinski, Ph.D., of NASA’s Jet Propulsion Laboratory.

“It’s incredible how much information we can collect in a short timeframe.”

“This makes us akin to telescopic mantis shrimps, equipped with an extraordinary polychromatic visual detection system capable of observing a vast area around us.”

Source: www.sci.news

The Entire Genome of Ancient Egypt Has Been Deciphered

Fresco from the Theban Necropolis showcasing an ancient Egyptian potter

DeAgostini/Getty Images

In a groundbreaking discovery, researchers sequenced the complete genome of an ancient Egyptian individual for the first time. The DNA was sourced from the remains of an elderly man, possibly a potter, who lived over 4,500 years ago.

The analysis revealed that this ancient Egyptian had inherited roughly 20% of his DNA from ancestors residing in the fertile crescent, situated more than 1,000 kilometers east of Egypt. This indicates a connection between Egyptian and Mesopotamian cultures, despite the considerable distance.

The remains were unearthed in the early 1900s from Nuweyrat, a necropolis located near Beni Hasan, Egypt. They were discovered within a ceramic vessel placed in the tomb of Iwage. Currently, these remains are housed at the World Museum in Liverpool, England.

“We successfully dated this individual’s remains using radiocarbon analysis,” states Adeline Morez Jacobs from Liverpool John Moore University. He lived between 2855 and 2570 BC, making him one of the earliest individuals from ancient Egypt, whose history spans from 3150 to 30 BC.

Both the skeleton and DNA confirm that the individual was male. Signs of arthritis and other physical indicators suggest he was between 44 and 64 years old. “He was likely in his 60s at the time of death, which is quite advanced for that period,” says Joel Eilish at Liverpool John Moore University.

The man’s social status remains uncertain. “He might have been buried in a manner associated with the upper class,” observes Ireland. However, his skeletal structure indicates a struggle with physical activity. Evidence suggests he frequently looked down or leaned forward, and that he sat on hard surfaces for extended periods. Researchers speculate that his probable profession was as a potter, based on preserved representations of various ancient Egyptian occupations.

Using samples collected from his tooth roots, the team was able to sequence the entire male genome. Previously, only partial genomes from three ancient Egyptians who lived in the region over 1,000 years ago had been achieved.

“There are few genetic sequences available from ancient Egypt,” remarks Shirly Ben-Dor Evian from Haifa University, Israel.

This scarcity is largely attributed to the warm climate, which accelerates DNA degradation. “The conditions are simply too hot,” avers team member Pontus Skoglund from the Francis Crick Institute in London, referring to the sequence as a ‘long shot.’

“We speculated that pot burials would create a stable environment, complementing the rock-cut tombs where these burials occurred,” explains Linus Girdland-Flink from the University of Aberdeen, UK.

As expected, around 80% of the genetic lineage of this male individual corresponds to North African ancestry. However, the remaining 20% aligns with populations from the fertile crescent covering parts of modern-day Iraq, western Iran, Syria, and Turkey.

There are multiple theories regarding this finding, according to Ben-Dor Evian. “Explorers often speculate about these connections,” she comments. Even after agriculture became prevalent, “there always existed a segment of the population that remained nomadic or semi-nomadic,” which may account for DNA migration between the fertile crescent and Egypt.

Archaeological evidence has previously indicated a link between ancient Egypt and Mesopotamia. “A significant cultural connection existed between the two, sharing artistic motifs,” states Ireland, noting that items like Lapis Lazuli were traded between the regions.

This connection might also have influenced the inception of writing systems. “Initial writing appeared almost simultaneously in both areas,” he explains, “with the development of Mesopotamian and Egyptian hieroglyphics taking place just 300 years apart.”

“Was it a local invention originating in both regions? [or] Did they influence each other in some manner?” queries Ben-Dor Evian. “This theory could suggest interaction through the movement of individuals.”

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Source: www.newscientist.com

Study Finds One Nation Produces Its Entire Food Supply.

According to a recent study, out of 186 countries, only Guyana is capable of producing sufficient food for itself without relying on foreign imports.

This study, published in Natural Food, assessed how effectively countries can supply their populations with seven food groups: fruits, vegetables, dairy products, fish, meat, plant-based proteins, and starchy staples.

Globally, the research revealed that 65% of countries produce meat and dairy in alignment with their population’s dietary needs.

It also determined that Guyana, situated in South America, stands as the sole country achieving complete self-sufficiency, while China and Vietnam can sufficiently produce food across six out of the seven food groups.

However, only one in seven individuals in the surveyed countries was deemed self-sufficient in five or more categories.

Surrounded by lush greenery, Guyana was identified as the only nation in this study that produces enough food to nourish its people across all seven food groups. – Credit: Jonas Stehl, Nature Food 2025, doi: 10.1038/S43016-025-01173-4 Data published

Meanwhile, there is a global deficiency of nutrient-dense plants, as fewer than half of the countries involved in the study produce adequate plant-based proteins, such as beans, chickpeas, lentils, nuts, and seeds, as well as sufficient starchy carbohydrates and vegetables.

Europe and South America tended to be closer to achieving self-sufficiency compared to other regions. In contrast, small island nations, countries in the Arabian Peninsula, and low-income nations were more likely to depend on food imports.

Six nations—Afghanistan, the United Arab Emirates, Iraq, Macau, Qatar, and Yemen—produced inadequate food groups to be categorized as self-sufficient.

“Low self-sufficiency is not inherently negative,” stated Dr. Jonas Stehl, a researcher from Göttingen and the first author of the study, in an interview with BBC Science Focus. “There are effective and often advantageous reasons why a country may not meet all its food production needs.”

For instance, a country may lack sufficient rainfall, quality soil, or stable temperatures necessary for growing adequate food for its population.

Stehl added that importing food from suitable regions can also be cost-effective.

“However, low levels of self-sufficiency can compromise a country’s ability to respond to sudden global food supply shocks, such as droughts, conflicts, and export bans,” he noted.

A team from the University of Göttingen in Germany and the University of Edinburgh in the UK conducted the study, evaluating the food output of various countries.

The researchers compared this data to the nutritional needs of each nation’s citizens, referencing the World Wildlife Fund’s Livewell Diet.

The Livewell Diet recommends “a flexible eating pattern that emphasizes plant-based protein sources, consumes vegetables, legumes, whole grains, and limits foods high in fat, salt, and sugar.”

The Covid-19 pandemic and the onset of the Russia-Ukraine conflict have sparked discussions about the merits of self-sufficiency, as these global crises have disrupted consistent food supplies to importing countries.

Stehl concluded that “the increased attention on national food self-sufficiency may signal broader political changes.”

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About Our Experts

Dr. Jonas Stehl is a doctoral researcher at the University of Göttingen in Germany, focusing on the food system and its implications for sustainability, nutrition, and health from a global viewpoint. He is part of an interdisciplinary research training group named Sustainable Food Systems. Stehl’s research interests include development, health, the environment, group economy, nutrition, and food security.

Source: www.sciencefocus.com

Entire Mastodon Jaw Fossil Discovered in New York Backyard

A momentous (or more accurately prehistoric) finding was unearthed just below the Earth’s surface on a New York homeowner’s lawn.

A full mastodon jaw was found in the backyard of a house in Scotchtown, a town in Orange County, as confirmed by state officials. The New York State Museum and the State University of New York at Orange researchers retrieved the jaw and additional bone fragments, as announced by the state Department of Education in a press release on Tuesday.

It has been over 11 years since a discovery of this kind has been made in New York.

The mastodon jaw, presumed to belong to an adult, was discovered by researchers after a homeowner noticed it surfacing on his lawn. Initially, the homeowner found two teeth hidden in plants on the property, and after some digging, two more teeth were discovered.

“Upon finding the tooth and examining it closely, we knew it was unique and decided to seek out an expert,” stated the homeowner.

Following this, museum and university staff conducted an excavation that led to the unveiling of the well-preserved jaw of a mastodon, an ancient relative of present-day elephants. Additionally, part of a toe bone and rib fragments were found.

Mastodon jaw unearthed in backyard in Scotchtown, New York new york state museum

“Though the jaw is the highlight, the additional toe and rib fragments provide valuable context and possibilities for further research,” said Dr. Corey Harris, chair of the Department of Behavioral Sciences at New York University at Orange. “We are also keen on exploring the surrounding area to look for more preserved bones.”

The fossil will undergo carbon dating and analysis to determine the mammal’s time of existence in the area, its dietary habits, and habitat details. The discovery will be showcased on public television as of 2025 and is expected to be featured in magazines.

“This finding proves New York’s rich paleontological history and our persistent efforts to understand the past,” said Robert Ferra, Director of Research and Collections and Curator of Ice Age Animals at the New York State Museum. Dr. Neck mentioned, “This mastodon jaw offers a unique chance to study the ecology of this extraordinary species and enhance our comprehension of the ice age ecosystems in the region.”

To date, approximately 150 mastodon fossils have been found in New York, with about one-third of them located in Orange County.

Source: www.nbcnews.com

Is it possible to embark on a space journey with the entire solar system?

Dead Planets Society is a podcast that explores wild ideas for manipulating the universe and tests their impact on the laws of physics, from splitting the moon to triggering doomsday events with gravitational waves. apple, Spotify Or visit our podcast page.

The thrilling adventure begins: In the season finale of Dead Planets Society, hosts Chelsea Whyte and Leah Crane propel Earth on a cosmic journey through our solar system.

Of course, sending Earth into space without its home planet would result in a dark, frigid voyage that would extinguish all life on Earth. And without anyone to witness the wonders of the universe, the journey would be meaningless. That’s why we need to bring the Sun along. The other planets are just a bonus.

Naturally, relocating the Sun is a monumental task, especially in terms of maintaining the orbits of the planets around it. This is where astrophysicists Jay Farihi and researchers from University College London come to the rescue in the episode.

One proposed solution is to construct a colossal warp drive, a self-contained space-time bubble that moves by distorting the space ahead of it. However, these theoretical devices are known for potentially enabling faster-than-light travel, and the key to keeping all planets tethered to the Sun is moving at a slow pace. Unfortunately, we have yet to figure out how to build such a device.

Another idea involves placing a black hole just ahead of the Sun to give it a slight boost – the black hole would then need to move along with the Sun, or alternatively, a series of black holes could traverse the Solar System in a cosmic relay race.

While these notions may seem far-fetched, there are more plausible concepts – though still improbable – such as deploying giant solar sails or inserting an unbreakable tube into the Sun to release high-pressure plasma jets.

The universe offers countless destinations that our hosts would love to explore with our now navigable solar system, ranging from star clusters to nebulae to supermassive black holes – all it requires is a few technological breakthroughs to make it a reality.

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Source: www.newscientist.com

Protecting the entire power grid from outages by rainproofing 1% of power lines

Damage from storms like Hurricane Harvey caused severe power outages to the Texas power grid.

Mark Ralston/AFP via Getty Images

Simulations suggest that storm sheltering just 1% of the power lines in a power grid can reduce the likelihood of a hurricane-induced power outage by a factor of five to one in 20. The demonstration, conducted on a mock version of the Texas power grid, could help improve the resiliency of power transmission systems around the world.

“The importance of different power lines to the overall system becomes clear only when studying the partial disruption of the power grid as the storm progresses,” he says. frank hellman at the Potsdam Institute for Climate Impact Research, Germany.

To identify the critical power lines most in need of protection, Hellman and his colleagues investigated how the power grid responds to widespread damage over time. They focused on the large-scale “failure cascade” that occurs after the initial storm damage. When power plants and transmission lines shut down to protect against further damage, secondary power outages can occur and increase the impact of a hurricane.

Researchers have determined that wind-related storm damage, such as damaged pylons and fallen tree limbs from gusts, and resulting damage to Texas during seven historic hurricanes between 2003 and 2020. simulated both a series of power outages that occurred on the power grid.

Rather than trying to predict individual power line failures, which can be caused by fallen trees or lightning strikes, researchers set each power line's probability of failure based on local wind speeds during each storm event. assigned. Their model maintains the same 20 critical transmission lines, where initial storm damage can cause a series of secondary line failures, even if they randomly vary the probability of failure for each line and rerun the simulation. Consistently identified electrical wires.

This experiment synthetic network model of the Texas Grid, which was previously developed by a team at Texas A&M University. It is not an exact replica of the actual physical grid, but represents the overall behavior of the grid. “None of the power lines in that grid are real power lines,” he says. adam burchfield at Texas A&M University. “Therefore, to see if these results hold true for the real Texas grid, we need to perform the study on at least a model of the real Texas grid.”

Power grid operators themselves can run this simulation with their own detailed power grid models, although independent researchers typically do not have access to such models for security reasons. Once you identify which specific lines are weak points, you can weatherize critical components of your grid.

Beyond Texas, such simulations can also model grids in other locations where similar storms have occurred. It says it “may provide an opportunity to validate the model and results.” Chuan Yi Ji from Georgia Tech in Atlanta was not involved in the study.

Hellman acknowledges that wind damage models have limitations. It does not take into account the possibility of further damage from flooding or how precautions grid operators can take to prevent power outages.

Still, Burchfield said the study's use of “different scenarios” to check the probability of outages in a realistic grid model further emphasized the study's main findings. “I think grid strengthening is a key element in making the grid more resilient,” he says. “And this paper shows that strategically choosing which transmission lines to strengthen is important to have the greatest impact on resiliency.”

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Source: www.newscientist.com

A black hole’s colossal outburst disrupts the entire galaxy’s equilibrium.

We all have bad days, with a monumental striptease here or an expression of anger there, but have you ever thrown a tantrum so bad that it upsets the balance of the entire galaxy?

Well, thanks to you, it turned out like this One particularly badly behaved black hole Observed by XMM-Newton Space Observatory.

If you zoom in on any large galaxy, you’ll find a supermassive black hole that pulls in gas from its surroundings with its immense gravity. As the gas spirals inward, it is squeezed into what is known as an accretion disk, a flat disk of gas orbiting around a massive central object.

Over time, the gas closest to the black hole passes through the point of no return and is essentially chewed up by its immense gravity. However, there’s a twist here. The black hole consumes only a portion of this gas and spits the rest back into space.


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Sometimes, like the naughty black hole discovered by XMM Newton, a black hole doesn’t just spew out a small amount of gas, it spews out its entire meal over hundreds of days. The gas in the accretion disk is thrown off in all directions at such high velocities that it completely wipes out the surrounding interstellar gas.

The effect would be so severe that gas would be blown through space and new stars would no longer be able to form. This completely changes the landscape of the surrounding galaxy where the black hole is found.

Accretion disk surrounding black hole slowly pulls in gas – Credit: European Space Agency

Typically, only black holes with very bright accretion disks spew out gas. These brighter disks typically feature faster “black hole winds” that spew out gas.

“It is extremely rare to observe ultrafast winds, and even rarer to detect winds with enough energy to change the properties of the host galaxy,” the co-authors said. Elias CammonAstronomer at Roma Tre University in Italy.

“The fact that Markarian 817 is [the galaxy in question] These winds occurred for about a year but were not particularly active, suggesting that the black hole may be changing the shape of its host galaxy much more than previously thought. ing. ”

For scientists, this research improves our understanding of how black holes and the galaxies around them interact. Many galaxies appear to have large regions around their centers where few new stars form. This may be explained by the black hole’s wind sweeping away star-forming gas.

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Source: www.sciencefocus.com