The Milky Way Devoured Smaller Galaxy About 11.8 Billion Years Ago

The collision about 11.8 billion years ago, when a dwarf galaxy known as LKH collided with the Milky Way and merged with it, appears in an artist's concept released on August 17, 2026.  NASA, ESA, Joseph Olmsted (STScI)/Handout via REUTERS
The collision about 11.8 billion years ago, when a dwarf galaxy known as LKH collided with the Milky Way and merged with it, appears in an artist's concept released on August 17, 2026. NASA, ESA, Joseph Olmsted (STScI)/Handout via REUTERS
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The Milky Way Devoured Smaller Galaxy About 11.8 Billion Years Ago

The collision about 11.8 billion years ago, when a dwarf galaxy known as LKH collided with the Milky Way and merged with it, appears in an artist's concept released on August 17, 2026.  NASA, ESA, Joseph Olmsted (STScI)/Handout via REUTERS
The collision about 11.8 billion years ago, when a dwarf galaxy known as LKH collided with the Milky Way and merged with it, appears in an artist's concept released on August 17, 2026. NASA, ESA, Joseph Olmsted (STScI)/Handout via REUTERS

The Milky Way, a large and spiral-shaped galaxy that is home to hundreds of billions of stars including our sun, has taken a long and complicated path to achieve its current dimensions, as illustrated by new research documenting a milestone event early in its history.

Scientists observing clusters of stars congregated near the Milky Way's center have discovered evidence that our galaxy swallowed a smaller galaxy roughly 11.8 billion years ago, when the universe was less than 15% of its current age. The event represents the Milky Way's earliest-known galactic merger and shows how it grew not only by forming its own stars but by merging with smaller galaxies caught in its gravitational pull.

The smaller galaxy is classified as a dwarf galaxy, differentiating it from larger galaxies like the Milky Way. The researchers estimate that it contained stars with a mass equivalent to 500 million times that ⁠of the sun ⁠at the time of the merger, about a quarter the size of what the Milky Way was at the time.

The researchers used the orbiting Hubble and Gaia telescopes to study stellar clusters, each containing hundreds of thousands of stars, inhabiting a region spanning the Milky Way's innermost 20,000 light-years, gauging their age, chemical composition and trajectory. A light-year is the distance light travels in a year, 5.9 trillion miles (9.5 trillion km).

These stars became part of the Milky Way after a galactic merger that occurred about 2 billion years after the Big Bang event that initiated the ⁠universe, they said. The dwarf galaxy where they originated was given the name Low-energy-Kraken-Heracles, or LKH, in recognition of three earlier studies that examined the possibility of such a primordial merger.

"The key finding of our research is the unambiguous discovery of the first merger event experienced by our galaxy in its infancy," said astrophysicist Davide Massari of the National Institute for Astrophysics, or INAF, in Bologna, Italy, lead author of the study published in the journal Nature Astronomy.

Whether the Milky Way's early growth was fueled by homegrown star formation or a galactic merger has been a matter of debate, Reuters quoted Massari as saying. The new study indicates that the merger infused the Milky Way early in its history with a large volume of stars and interstellar gas that feeds star formation, as well as the mysterious substance called dark matter.

"I would say that from the point of view of stars, the merger ⁠was rather peaceful, with ⁠no star-to-star crashes. But from the point of view of the gas, the merger was more 'explosive' — likely, the collision between the gas from LKH and that from the Milky Way triggered the formation of many stars," Massari said.

Massari said there are probably many stars that originally formed in the dwarf galaxy that still are buried in the inner regions of the Milky Way, some of them inside stellar clusters. Because of all the interstellar dust in this region, however, it is very difficult to identify individual stars, Massari said.

The Milky Way is known to have been involved in two other massive galactic mergers. It absorbed a dwarf galaxy called Gaia-Sausage-Enceladus about 1.8 billion years after the LKH merger. And over the past approximately 6 billion years it has been combining with the Sagittarius dwarf galaxy.

"Every single one of these mergers had an influence on the events that have led to the formation of our own solar system, and ultimately of Earth," Massari said. "This is why I think that reconstructing the pieces of the Milky Way's past effectively contributes to answering the big question about, 'Where do we come from?'"



Sea Levels to Rise in California as Coastal Wave Surges Up West Coast

Sand berms have been built along beaches in Southern California in anticipation of storms hitting the area. Patrick T. Fallon / AFP
Sand berms have been built along beaches in Southern California in anticipation of storms hitting the area. Patrick T. Fallon / AFP
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Sea Levels to Rise in California as Coastal Wave Surges Up West Coast

Sand berms have been built along beaches in Southern California in anticipation of storms hitting the area. Patrick T. Fallon / AFP
Sand berms have been built along beaches in Southern California in anticipation of storms hitting the area. Patrick T. Fallon / AFP

Sea levels in California are set to rise by as much as a foot (30 centimeters) in the coming days as an enormous wave washes up the US West Coast.

The huge surge of energy, known as a "coastal trapped wave" or a "Kelvin wave," is part of El Nino, a months-long phenomenon in the Pacific Ocean that scientists say could generate powerful storms and floods in some parts of the world, while leaving others in drought, reported AFP.

The Kelvin wave is not anything like a tsunami; nor does it crash on beaches. Rather it is a sustained bulge of excess water up to 30 kilometers (18 miles) wide that will hug the coastline as it travels all the way up to Alaska.

Dillon Amaya, an oceanographer at North Carolina State University, said the elevated sea levels could collide with other natural phenomena to create problems for coastal communities.

"What this wave is doing is it's raising sea states, and then when... you combine this wave with things like storm surge from passing weather, large swells, or things like astronomically high tide....(you) elevate your risk for things like flooding and also beach erosion," Amaya told AFP by telephone.

"The general rule of thumb is that every two to four inches (5-10 centimeters) of sea level rise that we see in that background state essentially doubles your flood risk.

"So it doesn't sound like a lot, but because it's over a huge volume of water, and it's combined with these other factors, you start to get the flood risk."

In recent weeks parts of Southern California have been hit by storm surges that have eaten away at beaches or damaged properties.

In Dana Point and Laguna Beach, south of Los Angeles, several houses have been left uninhabitable, and at least one has completely collapsed.

In Malibu, an enormous sink hole emerged in the driveway of a home belonging to Hollywood actor Nicolas Cage when pounding waves from a nearby hurricane eroded the coastline.

- El Nino -

The Kelvin wave is essentially both a cause and a symptom of El Nino, said Amaya, and originates in waters near Indonesia when trade winds die down.

"Those trade winds hold up a ton of really warm water in the Western Equatorial Pacific because they're pushing on the surface waters as they blow.

"If they weaken for too long... water is then able to effectively slosh back along the equatorial strip from Indonesia all the way to South America."

As this wave makes it way over the Pacific, it suppresses the cold water that usually comes up from the deep ocean, making the surface temperature higher.

It is this ocean warming that we call El Nino.

"So these Kelvin waves are, in many ways, the driving force of El Nino. They help El Nino grow and mature over the course of several months," said Amaya.

As the equatorial Kelvin wave hits South America, the energy converts into a coastal Kelvin wave, and heads both north and south along the continents.

The wave going towards the US is currently somewhere north of Cabo, Mexico, and travelling around six miles (10 kilometers) an hour, said Amaya, who expects it to reach San Diego within the next week.

While Kelvin waves are common -- there are five or six during every El Nino -- this one arrives at a delicate time, said Amaya, with sea temperatures already elevated.

"When it gets really warm, that water expands... which causes sea levels to rise just because the water is warm, so you get an additional additive increase in sea level," he said.

"Southern California... just got battered by offshore tropical cyclones, which led to flooding events already and beach erosion, so there's lots of anxiety about extra flood risk coming from El Nino and these waves."


Arkansas Gem Hunter Says He Found What May Be a $1 Million Diamond

This photo provided by Jack Pearadin shows Brian Busse on Aug. 9, 2026, in Buena Vista, Colo., holding a 6-carat diamond found by Pearadin and Michael Schumacher. (Jack Pearadin via AP)
This photo provided by Jack Pearadin shows Brian Busse on Aug. 9, 2026, in Buena Vista, Colo., holding a 6-carat diamond found by Pearadin and Michael Schumacher. (Jack Pearadin via AP)
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Arkansas Gem Hunter Says He Found What May Be a $1 Million Diamond

This photo provided by Jack Pearadin shows Brian Busse on Aug. 9, 2026, in Buena Vista, Colo., holding a 6-carat diamond found by Pearadin and Michael Schumacher. (Jack Pearadin via AP)
This photo provided by Jack Pearadin shows Brian Busse on Aug. 9, 2026, in Buena Vista, Colo., holding a 6-carat diamond found by Pearadin and Michael Schumacher. (Jack Pearadin via AP)

Jack Pearadin is the first to admit that his diamond-hunting hobby hasn't paid off, despite sifting rocks for more than a dozen years.

But earlier this year, the Navy reservist and his friend shoveled a six-carat diamond from a field in Arkansas where he's found over 300 gems so far. And this one was like nothing he's dug up before — Pearadin claims collectors have told him it could be worth over $1 million.

At least one experienced appraiser told The Associated Press that a diamond of such size and quality could be worth a fourth of that — still an impressive find.

“Oh my God! Oh my God!” Pearadin said as he livestreamed the discovery on TikTok. “Holy crap, we got a big one!” he yelled after rinsing gravel from a bucket and then flipping the pile onto a table to expose the shiny facets of a 6.03-carat diamond.

Roughly the size of a fingernail, it’s the largest diamond found this year at Crater of Diamonds State Park. More than 37,000 diamonds have been discovered since the former open-pit diamond mine became part of a state park in 1972.

The largest diamond found at the park, 'Uncle Sam,’ weighed 40 carats

The park charges a $15 entry fee to fill a 5-gallon bucket with rocks, and people can keep any gemstones they find. Most are small and worth maybe a few hundred dollars. The largest diamond ever unearthed in the United States, a 40.23-carat stone called the Uncle Sam, was found at the park in 1924.

Pearadin, originally from Missouri, has been trying his luck at the park since 2013, even moving to nearby Murfreesboro to support his hobby — “I love it that much,” he told The Associated Press. He's sold most of his diamonds online.

Most of the 400 to 800 diamonds found at the park annually weigh about a quarter of a carat, according to park interpreter Sarah Bivens. But there have been some bigger ones, said park assistant superintendent Waymon Cox: In 2020 a 9-carat diamond was found by an Arkansas bank manager, and in 2024 a French man unearthed a 7-carat diamond.

Diamonds are found in few places in the US

Diamonds are crystallized under tremendous pressure and heat deep inside the Earth and then thrust to the surface through volcanic activity before they’re scattered by water or wind. These natural diamonds are often cloudy and oddly shaped, and lose about 25% of their weight as they're cut and polished into what a jeweler would sell, according to Nathan Renfro, senior manager at the Gemological Institute of America.

Renfro said the US has only two known primary deposits of diamonds — places where columns of once-molten volcanic rock have reached the surface — Crater of Diamonds and Colorado’s Kelsey Lake, where the land was reclaimed after a commercial mining operation went out of business years ago.

Today, that leaves the Arkansas park as one of the only places in the world where anyone can hunt for diamonds and take their finds with them.

“It’s a pretty remarkable operation that that’s available to the public,” Renfro said. “Most diamond mines are super high security.”

So can Jack finally get a big payday? A typical .17-carat diamond from the park can sell for around $700, said certified gem appraiser Laura Stanley in Little Rock. But a high-quality six-carat yellow diamond from the park can sell for about $250,000, she said, partly because of their origin.

“They are their own entity,” Stanley said. “It’s the only place in America where you can go find your own diamond and you can’t compare that to a diamond from anywhere else.”

The Uncle Sam crystal was cut and polished into a 12.42-carat diamond gifted to the Smithsonian National Museum of Natural History, where it's on view in the “Great American Diamonds” exhibit.

Pearadin named his latest and biggest find the “American Dream.”

“It’s just this massive, gorgeous yellow diamond,” Pearadin said. He plans to split the profits with fellow gem hunter Michael Schumacher of Wisconsin, who helped dig the gravel that produced the stone, and open his own crystal mine.


Return of Swarming Moth Spectacle Has Australia in a Flutter

This picture taken on October 1, 2026 shows a Bogong moth among the leaves of a tree in Sydney. (Photo by David WILLIAMS / AFP)
This picture taken on October 1, 2026 shows a Bogong moth among the leaves of a tree in Sydney. (Photo by David WILLIAMS / AFP)
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Return of Swarming Moth Spectacle Has Australia in a Flutter

This picture taken on October 1, 2026 shows a Bogong moth among the leaves of a tree in Sydney. (Photo by David WILLIAMS / AFP)
This picture taken on October 1, 2026 shows a Bogong moth among the leaves of a tree in Sydney. (Photo by David WILLIAMS / AFP)

Moth swarms so thick they can blot out the stars are fluttering across Australia, heralding a migratory spectacle unseen since the creature's brush with extinction nearly 10 years ago.

The great migration of the Bogong moth was once a yearly feature of the Australian spring, the insects humming down the nation's east coast in their billions as they searched for cooler climes.

But drought, pesticides and habitat destruction triggered an unprecedented collapse that began in 2017, eventually wiping out an estimated 99.5 percent of the Bogong moth population.

While vast clouds of flying bugs might not be everyone's cup of tea, scientists have been delighted to find that the Bogongs are back.

"There have been happy tears in my office because this is what nature should be," said conservation biologist Marissa Parrott.

"People are noticing those big swarms again. They can celebrate what I think is one of nature's great spectacles."

In a good year, four billion moths or more would escape the inland heat to seek shelter in the alpine caves of eastern Australia.

"So many Bogong moths would come through that they could block out the stars and the moon as they went overhead," said Parrott, from Zoos Victoria.

Photos showed how the endangered moths clustered together so densely inside their caves, it was impossible to see the rock beneath.

"They get up into the mountains and into these caves, where they make this beautiful tiling pattern," said Western Sydney University insect researcher Eleanor Drinkwater.

"They cover the walls in this very dense mat of moths.

"They hang out there until the weather starts getting cooler, and they come back down to their breeding grounds."

Their migration has long fascinated scientists, who have puzzled over how they found their way on a journey they only ever make once.

By placing a tether around captive moths and projecting stars on the wall, researchers last year showed how Bogongs used the Milky Way.

They were the first invertebrates -- a broad group of animals including spiders, snails and worms -- shown to use celestial navigation for such long trips.

Bogong moths are thought to help plants spread pollen and are also a key food source for the mountain pygmy possum, a critically endangered cave-dwelling marsupial.

"They are very, very important to Australian ecosystems," Drinkwater said.

Drawn towards the blazing stadium floodlights, Bogong swarms caused havoc at the 2000 Olympic Games in Sydney.

Forecasters warned that heavy rain was about to drench the event's closing ceremony -- only to realize the radar had picked up a cloud of Bogongs, AFP reported.

While the Bogong migration continued in the years following the population crash, scientists were aghast at how few moths were making the journey.

"People described going into the caves and finding barely any moths, and just kind of being in shock," Drinkwater said.

Researchers are still working to better understand what contributed to the Bogong bounce-back, but believe a spate of wetter weather has helped.

With a severe El Nino forecast to send temperatures soaring over summer, scientists hope the rebound is not short lived.

"It's great they're back, and we're really excited they're back," said Drinkwater.