The Odd Behavior of a Subatomic Particle May Shake up Physics

The Muon g-2 ring sits in its detector hall at US Department of Energy's Fermi National Accelerator Laboratory (Fermilab) in Batavia, Illinois, US, in an undated handout photo. (Fermi National Accelerator Laboratory/Ryan Postel/Handout via Reuters)
The Muon g-2 ring sits in its detector hall at US Department of Energy's Fermi National Accelerator Laboratory (Fermilab) in Batavia, Illinois, US, in an undated handout photo. (Fermi National Accelerator Laboratory/Ryan Postel/Handout via Reuters)
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The Odd Behavior of a Subatomic Particle May Shake up Physics

The Muon g-2 ring sits in its detector hall at US Department of Energy's Fermi National Accelerator Laboratory (Fermilab) in Batavia, Illinois, US, in an undated handout photo. (Fermi National Accelerator Laboratory/Ryan Postel/Handout via Reuters)
The Muon g-2 ring sits in its detector hall at US Department of Energy's Fermi National Accelerator Laboratory (Fermilab) in Batavia, Illinois, US, in an undated handout photo. (Fermi National Accelerator Laboratory/Ryan Postel/Handout via Reuters)

The peculiar wobble of a subatomic particle called a muon in a US laboratory experiment is making scientists increasingly suspect they are missing something in their understanding of physics - perhaps some unknown particle or force.

Researchers on Thursday announced new findings about the muon (pronounced MEW-on), a magnetic and negatively charged particle similar to its cousin the electron but 200 times more massive, in their experiment at the US Energy Department's Fermi National Accelerator Laboratory in Batavia, Illinois.

The experiment studied the wobble of muons as they traveled through a magnetic field. The muon, like the electron, has a tiny internal magnet that causes it to wobble - or, technically speaking, "precess" - like the axis of a spinning top while in a magnetic field.

But the wobble's speed, as measured in the experiment, varied considerably from what was predicted based on the Standard Model of particle physics, the theory that explains how the basic building blocks of matter interact, governed by four fundamental forces in the universe.

The new findings, building on data released in 2021, continue to hint at some mysterious factor at play as the researchers try to sort out the discrepancy between the theoretical prediction and the actual experimental results.

"We are looking for an indication that the muon is interacting with something that we do not know about. It could be anything: new particles, new forces, new dimensions, new features of space-time, anything," said Brendan Casey, a senior scientist at Fermilab and one of the authors of a research paper on the findings published in the journal Physical Review Letters.

"I like crazy so I would love this to be something like Lorentz violation or some other new property of space-time itself. That would be insane and revolutionary," Casey added.

Casey was alluding to a principle called Lorentz invariance that holds that the laws of physics are the same everywhere.

"Yes, it is fair to say that it could be pointing to unknown particles or forces," University College London physicist and study co-author Rebecca Chislett said. "Currently due to new results in the theory community, it is difficult to say exactly what the discrepancy between the two (predicted muon behavior and observed behavior) is, but theorists are working hard to resolve this."

The experiment was conducted at minus-450 degrees Fahrenheit (minus-268 degrees Celsius). The researchers shot beams of muons into a donut-shaped superconducting magnetic storage ring measuring 50 feet (15 meters) in diameter. As the muons zipped around the ring traveling nearly the speed of light, they interacted with other subatomic particles that, like tiny dance partners, altered their wobble.

The 2021 results similarly showed an anomalous wobble. The new results were based on quadruple the amount of data, bolstering confidence in the findings.

"With all this new knowledge, the result still agrees with the previous results and this is hugely exciting," Chislett said.

The researchers hope to announce their final findings using all of their collected data in about two years.

"The experiment measures how fast muons spin in a magnetic field. The concept is simple. But to get to the required precision takes years of building the experiment and taking data. We took data from 2018 to 2023. The new result is based on our 2019 and 2020 data," Casey said.

"We have to be patient because we need the Standard Model prediction to catch up to us for us to make the strongest use of our data," Casey added. "We are also very baffled because there are different ways to predict what our experiment should see and they don't agree well. So there is something very fundamental here we must be missing, which is very intriguing."



Thieves Drill into a German Bank Vault and Steal Tens of Millions of Euros Worth of Property

 Police officers stand in front of the savings bank branch in the Buer district in Gelsenkirchen, Germany, Tuesday, Dec. 30, 2025 following a break-in into the bank's vault. (Christoph Reichwein/dpa via AP)
Police officers stand in front of the savings bank branch in the Buer district in Gelsenkirchen, Germany, Tuesday, Dec. 30, 2025 following a break-in into the bank's vault. (Christoph Reichwein/dpa via AP)
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Thieves Drill into a German Bank Vault and Steal Tens of Millions of Euros Worth of Property

 Police officers stand in front of the savings bank branch in the Buer district in Gelsenkirchen, Germany, Tuesday, Dec. 30, 2025 following a break-in into the bank's vault. (Christoph Reichwein/dpa via AP)
Police officers stand in front of the savings bank branch in the Buer district in Gelsenkirchen, Germany, Tuesday, Dec. 30, 2025 following a break-in into the bank's vault. (Christoph Reichwein/dpa via AP)

Thieves stole tens of millions of euros worth of property from safety deposit boxes inside a German bank vault that they drilled into Monday during the holiday lull, police said.

Some 2,700 bank customers were affected by the theft in Gelsenkirchen, police and the Sparkasse bank said.

Thomas Nowaczyk, a police spokesperson, said investigators believe the theft was worth between 10 and 90 million euros ($11.7 to 105.7 million).

German news agency dpa reported that the theft could be one of Germany's largest heists.

The bank remained closed Tuesday, when some 200 people showed up demanding to get inside, dpa reported.

A fire alarm summoned police officers and firefighters to the bank branch shortly before 4 a.m. Monday. They found a hole in the wall and the vault ransacked. Police believe a large drill was used to break through the vault's basement wall.

Witnesses told investigators they saw several men carrying large bags in a nearby parking garage over the weekend. Video footage from the garage shows masked people inside a stolen vehicle early Monday, police said.

Gelsenkirchen is about 192 kilometers (119 miles) northwest of Frankfurt.


The Year's First Meteor Shower and Supermoon Clash in January Skies

People look up to the sky from an observatory near the village of Avren, Bulgaria, Aug. 12, 2009. (AP Photo/Petar Petrov, File)
People look up to the sky from an observatory near the village of Avren, Bulgaria, Aug. 12, 2009. (AP Photo/Petar Petrov, File)
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The Year's First Meteor Shower and Supermoon Clash in January Skies

People look up to the sky from an observatory near the village of Avren, Bulgaria, Aug. 12, 2009. (AP Photo/Petar Petrov, File)
People look up to the sky from an observatory near the village of Avren, Bulgaria, Aug. 12, 2009. (AP Photo/Petar Petrov, File)

The year's first supermoon and meteor shower will sync up in January skies, but the light from one may dim the other.

The Quadrantid meteor shower peaks Friday night into Saturday morning, according to the American Meteor Society. In dark skies during the peak, skygazers typically see around 25 meteors per hour, but this time they'll likely glimpse less than 10 per hour due to light from Saturday's supermoon, The AP news reported.

“The biggest enemy of enjoying a meteor shower is the full moon,” said Mike Shanahan, planetarium director at Liberty Science Center in New Jersey.

Meteor showers happen when speedy space rocks collide with Earth’s atmosphere, burning up and leaving fiery tails in their wake — the end of a “shooting star.” A handful of meteors are visible on any given night, but predictable showers appear annually when Earth passes through dense streams of cosmic debris.

Supermoons occur when a full moon is closer to Earth in its orbit. That makes it appear up to 14% bigger and 30% brighter than the faintest moon of the year, according to NASA. That difference can be tough to notice with the naked eye.

Supermoons, like all full moons, are visible in clear skies everywhere that it's night. The Quadrantids, on the other hand, can be seen mainly from the Northern Hemisphere. Both can be glimpsed without any special equipment.

To spot the Quadrantids, venture out in the early evening away from city lights and watch for fireballs before the moon crashes the party, said Jacque Benitez with the Morrison Planetarium at the California Academy of Sciences. Skygazers can also try looking during early dawn hours on Sunday.

Wait for your eyes to get used to the darkness, and don’t look at your phone. The space rocks will look like fast-moving white dots and appear over the whole sky.

Meteor showers are named for the constellation where the fireballs appear to come from. The Quadrantids — space debris from the asteroid 2003 EH1 — are named for a constellation that's no longer recognized.

The next major meteor shower, called the Lyrids, is slotted for April.

Supermoons happen a few times a year and come in groups, taking advantage of the sweet spot in the moon’s elliptical orbit. Saturday night’s event ends a four-month streak that started in October. There won't be another supermoon until the end of 2026.


New Maritime Theater in Jazan to Host the City's Festival Opening

The site also includes various amenities, such as shopping zones, kiosks for dining, an art gallery - SPA
The site also includes various amenities, such as shopping zones, kiosks for dining, an art gallery - SPA
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New Maritime Theater in Jazan to Host the City's Festival Opening

The site also includes various amenities, such as shopping zones, kiosks for dining, an art gallery - SPA
The site also includes various amenities, such as shopping zones, kiosks for dining, an art gallery - SPA

The Jazan city theater on the southern corniche will host the opening ceremony of the Jazan Festival 2026 on Friday. This event will take place at a 35-square-kilometer site that features the Kingdom's largest maritime theater, SPA reported.

The theater accommodates more than 10,000 spectators and features five VIP areas. To ensure a smooth experience, the venue offers parking for over 9,000 vehicles, providing easy access during peak times.

Built specifically for the festival, the stage meets stringent safety and technical standards, providing a high-quality audiovisual experience against the stunning backdrop of the Red Sea.

The site also includes various amenities, such as shopping zones, kiosks for dining, an art gallery, a play area for children, a bird garden, and a regional museum, showcasing the region's history and culture.

This temporary maritime theater aims to provide a cohesive experience, integrating entertainment, culture, shopping, and services in one location, further establishing Jazan as a year-round destination for tourism and entertainment.