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Climate change could unleash gigantic tsunamis in the Southern Ocean by triggering underwater landslides in Antarctica, a new study warns. 

By drilling into sediment cores hundreds of feet beneath the seafloor in Antarctica, scientists discovered that during previous periods of global warming — 3 million and 15 million years ago — loose sediment layers formed and slipped to send massive tsunami waves racing to the shores of South America, New Zealand and Southeast Asia. 

And as climate change heats the oceans, the researchers think there’s a possibility these tsunamis could be unleashed once more. Their findings were published May 18 in the journal Nature Communications.

Related: Widening chasm births Antarctic iceberg larger than Los Angeles

“Submarine landslides are a major geohazard with the potential to trigger tsunamis that can lead to huge loss of life,” Jenny Gales, a lecturer in hydrography and ocean exploration at the University of Plymouth in the U.K., said in a statement. “Our findings highlight how we urgently need to enhance our understanding of how global climate change might influence the stability of these regions and potential for future tsunamis.”

Researchers first found evidence of ancient landslides off Antarctica in 2017 in the eastern Ross Sea. Trapped underneath these landslides are layers of weak sediment crammed with fossilized sea creatures known as phytoplankton. 

Scientists returned to the area in 2018 and  drilled deep into the seafloor to extract sediment cores — long, thin cylinders of the Earth’s crust that show, layer by layer, the geological history of the region. 

By analyzing the sediment cores, the scientists learned that the layers of weak sediment formed during two periods, one around 3 million years ago in the mid-Pliocene warm period, and the other roughly 15 million years ago during the Miocene climate optimum. During these epochs, the waters around Antarctica were 5.4 degrees Fahrenheit (3 degrees Celsius) warmer than today, leading to bursts of algal blooms that, after they had died, filled the seafloor below with a rich and slippery sediment — making the region prone to landslides. 

“During subsequent cold climates and ice ages these slippery layers were overlain by thick layers of coarse gravel delivered by glaciers and icebergs,” Robert McKay, director of the Antarctic Research Centre at Victoria University of Wellington and co-chief scientist of International Ocean Discovery Program Expedition 374 — which extracted the sediment cores in 2018 — told Live Science in an email. RELATED STORIES—1st mega-tsunami on record since antiquity was triggered by Tonga volcanic eruption

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The exact trigger for the region’s past underwater landslides isn’t known for sure, but the researchers have found a most-likely culprit: the melting of glacier ice by a warming climate. The ending of Earth’s periodic glacial periods caused ice sheets to shrink and recede, lightening the load on Earth’s tectonic plates and making them rebound upwards in a process known as isostatic rebound. 

After the layers of weak sediment had built up in sufficient quantities, Antarctica’s continental upspringing triggered earthquakes that caused the coarse gravel atop the slippery layers to slide off the continental shelf edge — causing landslides that unleashed tsunamis.

The scale and size of the ancient ocean waves is not known, but the scientists note two relatively recent submarine landslides that generated huge tsunamis and caused significant loss of life: The 1929 Grand Banks tsunami that generated 42-foot-high (13 meters) waves and killed around 28 people off Canada’s Newfoundland coast; and the 1998 Papua New Guinea tsunami that unleashed 49-foot-high (15 m) waves that claimed 2,200 lives.

With many layers of the sediment buried beneath the Antarctic seabed, and the glaciers on top of the landmass slowly melting away, the researchers warn that — if they’re right that glacial melting caused them in the past — future landslides, and tsunamis, could happen again.

“The same layers are still present on the outer continental shelf — so it is ‘primed’ for more of these slides to occur, but the big question is whether the trigger for the events is still in play.” McKay said. “We proposed isostatic rebound as a logical potential trigger, but it could be random failure, or climate regulated shifts in ocean currents acting to erode sediment at key locations on the continental shelf that could trigger slope failure. This is something we could use computer models to assess for in future studies.”

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Jung hits HR for mom while facing brother Jace

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Jung hits HR for mom while facing brother Jace

DETROIT — Josh Jung delivered a special Mother’s Day gift to his mom, Mary.

The Texas Rangers third baseman hit a two-out, two-run homer in the fifth inning off Beau Brieske at Detroit on Sunday. Jung’s brother, Jace, was in the Tigers’ lineup at the same position.

Before the game, Mary Jung delivered the game ball to the mound and her sons joined her on the field.

“My heart is just exploding,” Mary Jung said in an interview on the Rangers’ telecast. “I mean, I couldn’t ask for a better Mother’s Day gift. We’re all in the same place, to begin with. But then to watch them live their dream, do what they love to do, I couldn’t be more proud.”

According to the Elias Sports Bureau, it was the first home run by a player facing his brother’s team on Mother’s Day since at least 1969.

The Jungs’ parents, Mary and Jeff, have been in attendance throughout the three-game series. The brothers also started Saturday when Texas recorded a 10-3 victory.

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Yankees’ Stroman has setback in rehab of knee

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Yankees' Stroman has setback in rehab of knee

WEST SACRAMENTO, Calif. — New York Yankees pitcher Marcus Stroman had a setback as he tries to return from a left knee injury that has sidelined him for the past month.

Manager Aaron Boone said Sunday that Stroman still had “discomfort” in the knee after throwing a live batting practice session in Tampa, Florida, on Friday and will be reevaluated before the team figures out the next step in his rehabilitation process.

“He’s gotten a lot of treatments on it and stuff,” Boone said. “It just can’t kind of get over that final hump to really allow him to get to that next level on the mound. We’ll try and continue to get our arms around it and try and make sure we get that out of there.”

Stroman hasn’t pitched since allowing five runs in two-thirds of an inning against the San Francisco Giants on April 11. He was placed on the 15-day injured list the next day with what Boone hoped at the time would be a short-term absence.

But there is no timeline for the right-hander’s return, and Boone said the injury likely impacted the way Stroman pitched before going on the IL. He was 0-1 with an 11.57 ERA in three starts.

“Certainly that last start, I think he just couldn’t really step on that front side like he needed to,” Boone said. “I talk about how these guys are like race cars, and one little thing off and it can affect just that last level of command or that last level of extra stuff that you need. So we’ll continue to try to get him where we need to.”

Stroman had surgery March 19, 2015, to repair a torn ACL in his left knee. He returned to a major league mound that Sept. 12.

Stroman, 34, is in the second season of a two-year contract guaranteeing $37 million. His deal includes a $16 million conditional player option for 2026 that could be exercised if he pitches in at least 140 innings this year.

Last season, Stroman was 10-9 with a 4.31 ERA in 30 games (29 starts) when he threw 154⅔ innings, his most since 2021 with the Mets. Stroman struggled in the second half and did not pitch in the postseason, when the Yankees made their first World Series appearance since 2009.

In other injury news, DJ LeMahieu played for the second straight day on a rehab assignment at Triple-A Scranton/Wilkes-Barre on Sunday and could join the team in Seattle this week to make his season debut. LeMahieu had a cortisone injection last week in his right hip, dealing with an injury stemming from last year.

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