-
'Act before it's too late': Tokyo residents fight for more trees
-
World records prove Asian Games were a hit, says top official
-
'Disappointing' as South Korea flag mishap sees Games end on sour note
-
US prison chief who oversaw botched execution resigns
-
Pre-COP host Tuvalu at frontline of climate change
-
'Chaotic' Asian Games threaten Japan hopes of hosting Olympics again
-
Hungary's dwindling paprika producers battle to save signature spice
-
Finnish town braces for change from Google data centres
-
Cornell president vows review in wake of alleged student gang rape
-
What is fuelling French school protests?
-
Latvian partial election results suggest pro-European choice
-
Without lawyers, migrant children face deportation from the US
-
In Egypt's Sinai, Gazan builds school for children displaced by war
-
Three-peat seeking Dodgers open playoffs with a win, Rays hold off Yankees
-
Trump tariffs a mixed bag for US auto industry
-
Brazil votes in nail-biter polls closely watched by Trump
-
Yemen government forces say struck Houthi targets
-
'Just be you': Kim reveals Tiger text that inspired him to gold
-
Music links past, present for Pedro Pascal's cellist in 'Behemoth!'
-
Myanmar migrants returned to war-torn nation from Malaysia
-
ALEX BODI ȘI AMBASADORUL REPUBLICII SUDANUL DE SUD, GUM DOMINIC MATIOK, DISCUTĂ LA BERLIN DESPRE POSIBILITATEA ÎNFIINȚĂRII UNUI CONSULAT ONORIFIC LA BUCUREȘTI
-
ALEX BODI AND AMBASSADOR GUM DOMINIC MATIOK OF THE REPUBLIC OF SOUTH SUDAN MEET IN BERLIN TO DISCUSS THE POSSIBILITY OF AN HONORARY CONSULATE IN BUCHAREST
-
Dodgers step up World Series three-peat bid with 5-3 win over Braves
-
Lula, Bolsonaro wrap up campaigns ahead of Brazil's knife-edge vote
-
Spain break down Czechs as England outclass Croatia in Nations League
-
Toulouse edge Castres in Top 14 derby
-
Yamal on target as Spain hold off Czech Republic
-
Murakami homer propels White Sox to MLB playoff win over Guardians
-
Latvian exit polls suggest pro-European choice
-
Israel targets top Hamas leader in deadly Gaza strike on anniversary
-
Lula, Bolsonaro wrap up campaigns ahead of knife-edge election
-
Houthis say struck oil facility near Riyadh, as Saudis hit Sanaa
-
Tuchel hails 'complete' England after Croatia demolition
-
AI needs safety layers like nuclear plants: ex-OpenAI engineer
-
Fury to invite Trump to lead ring walk before Joshua showdown
-
MVP Judge will miss Yankees' MLB playoff series against Rays
-
Fashion industry in 'precarious moment', says Vivienne Westwood supremo
-
New lizard species discovered in Peru
-
Seventh heaven for England in Nations League rout of Croatia
-
Fernandes hails Portugal's 'greatest symbol' Ronaldo, calls for unity
-
Storms, flooding cause chaos on Greek holiday island of Crete
-
Grandidier-Nkanang double takes Pau to Top 14 summit despite Vannes fightback
-
#IAmJaneDoe: online support campaign in US university rape case
-
Trainer Scott gets perfect Arc boost with top notch double
-
Brazil shine on Selecao's first visit to India
-
Ex-PM says Putin cannot admit 'mistake' over Ukraine
-
Zverev sets up Djokovic quarter-final at China Open, Rybakina out
-
Houthis say Saudi Arabia launches dozens of strikes on Yemen capital
-
Happier at home, Bordeaux hammer Lyon in Top 14
-
Qatar and Abu Dhabi F1 Grand Prix to go ahead - F1 boss
Scientists observe 'negative time' in quantum experiments
Scientists have long known that light can sometimes appear to exit a material before entering it -- an effect dismissed as an illusion caused by how waves are distorted by matter.
Now, researchers at the University of Toronto, through innovative quantum experiments, say they have demonstrated that "negative time" isn't just a theoretical idea -- it exists in a tangible, physical sense, deserving closer scrutiny.
The findings, yet to be published in a peer-reviewed journal, have attracted both global attention and skepticism.
The researchers emphasize that these perplexing results highlight a peculiar quirk of quantum mechanics rather than a radical shift in our understanding of time.
"This is tough stuff, even for us to talk about with other physicists. We get misunderstood all the time," said Aephraim Steinberg, a University of Toronto professor specializing in experimental quantum physics.
While the term "negative time" might sound like a concept lifted from science fiction, Steinberg defends its use, hoping it will spark deeper discussions about the mysteries of quantum physics.
- Laser experiments -
Years ago, the team began exploring interactions between light and matter.
When light particles, or photons, pass through atoms, some are absorbed by the atoms and later re-emitted. This interaction changes the atoms, temporarily putting them in a higher-energy or "excited" state before they return to normal.
In research led by Daniela Angulo, the team set out to measure how long these atoms stayed in their excited state. "That time turned out to be negative," Steinberg explained -- meaning a duration less than zero.
To visualize this concept, imagine cars entering a tunnel: before the experiment, physicists recognized that while the average entry time for a thousand cars might be, for example, noon, the first cars could exit a little sooner, say 11:59 am. This result was previously dismissed as meaningless.
What Angulo and colleagues demonstrated was akin to measuring carbon monoxide levels in the tunnel after the first few cars emerged and finding that the readings had a minus sign in front of them.
- Relativity intact -
The experiments, conducted in a cluttered basement laboratory bristling with wires and aluminum-wrapped devices, took over two years to optimize. The lasers used had to be carefully calibrated to avoid distorting the results.
Still, Steinberg and Angulo are quick to clarify: no one is claiming time travel is a possibility. "We don't want to say anything traveled backward in time," Steinberg said. "That's a misinterpretation."
The explanation lies in quantum mechanics, where particles like photons behave in fuzzy, probabilistic ways rather than following strict rules.
Instead of adhering to a fixed timeline for absorption and re-emission, these interactions occur across a spectrum of possible durations -- some of which defy everyday intuition.
Critically, the researchers say, this doesn't violate Einstein's theory of special relativity, which dictates that nothing can travel faster than light. These photons carried no information, sidestepping any cosmic speed limits.
- A divisive discovery -
The concept of "negative time" has drawn both fascination and skepticism, particularly from prominent voices in the scientific community.
German theoretical physicist Sabine Hossenfelder, for one, criticized the work in a YouTube video viewed by over 250,000 people, noting, "The negative time in this experiment has nothing to do with the passage of time -- it's just a way to describe how photons travel through a medium and how their phases shift."
Angulo and Steinberg pushed back, arguing that their research addresses crucial gaps in understanding why light doesn’t always travel at a constant speed.
Steinberg acknowledged the controversy surrounding their paper's provocative headline but pointed out that no serious scientist has challenged the experimental results.
"We've made our choice about what we think is a fruitful way to describe the results," he said, adding that while practical applications remain elusive, the findings open new avenues for exploring quantum phenomena.
"I'll be honest, I don’t currently have a path from what we've been looking at toward applications," he admitted. "We're going to keep thinking about it, but I don't want to get people's hopes up."
A.Motta--PC