Breaking 16:45 Morgan Stanley strengthens industrials banking team with senior Bank of America hire 16:01 Trump warns Senate rules debate could reshape future Republican presidencies 15:16 Canada weighs trade concessions as talks with US focus on tariff relief 14:45 Texas Stock Exchange seeks to challenge Wall Street with a new trading platform 14:10 TikTok restructures U.S. operations with Nashville office closure and workforce reduction 13:49 Ford unveils affordable Fathom electric pickup to challenge Tesla and BYD 13:30 Toronto stock futures advance as investors await Canada and US employment reports 12:58 Proposed Strait of Hormuz shipping framework faces sanctions and insurance challenges 12:42 UN chief urges renewed nuclear arms control dialogue between the United States and Russia 12:20 Google reshapes its AI division to strengthen competition with OpenAI 11:11 Google Maps evolves into an AI-powered personal assistant 10:54 Republican opposition to Todd Blanche grows ahead of attorney general confirmation vote 10:16 Global markets remain on high alert despite the summer slowdown 10:00 Google Cloud partners with Mirendil to advance self-improving artificial intelligence 09:47 Trump signs executive order targeting birth tourism in the United States 08:37 United States expands social media screening for foreign visa applicants 08:18 Meta reports AI testing incident that raised cybersecurity concerns 18:15 FCC removes local TV ownership cap, opening door to media consolidation 18:00 Mark Carney defends Canada's trade stance after Trump's criticism

Scientists observe virtual particles turning into real matter

Thursday 05 February 2026 - 11:20
By: Dakir Madiha
Scientists observe virtual particles turning into real matter

Scientists at Brookhaven National Laboratory have captured the first direct experimental evidence of virtual particles from quantum vacuum transforming into detectable real matter, shedding new light on how nothingness spawns the visible universe.

The breakthrough, detailed in a recent Nature publication, stems from the STAR collaboration's work at the Relativistic Heavy Ion Collider (RHIC) in Upton, New York. As the facility enters its 25th and final year of operations before transitioning to an electron-ion collider, researchers analyzed millions of proton-proton collision events. They zeroed in on pairs of lambda hyperons and anti-lambda particles, which contain strange quarks.

Quantum theory posits that the vacuum teems with fleeting quark-antiquark pairs that briefly emerge before vanishing, their spins inherently aligned due to magnetic properties. The STAR detector spotted these lambda and anti-lambda particles emerging in close proximity during collisions, with their spins perfectly aligned, a telltale sign of virtual particles from the vacuum. The team measured a relative polarization signal of 18 percent, with just a 4 percent margin of error.

"This finding opens a unique window into the quantum vacuum, potentially ushering in a new era for understanding how visible matter forms and acquires its fundamental properties," said Zhoudunming Tu, a STAR physicist at Brookhaven who co-led the study. High-energy RHIC collisions supplied the boost needed to convert these entangled strange quark pairs into real, observable particles.

The discovery carries profound implications for unraveling the proton's mass origins. Physicists have long known that quarks account for only about 1 percent of a proton's mass; the remaining 99 percent arises from intricate dynamics in the quantum chromodynamics vacuum. This experimental method could illuminate how matter gains mass through vacuum interactions. "In our setup, the collision energy at RHIC turns virtual vacuum particles into real matter," Tu explained. "We can now reverse-engineer this complex process."

These results mark a capstone achievement for RHIC, a cornerstone of U.S. nuclear physics research since 2000. The collider will wind down this year as Brookhaven repurposes the site for the Electron-Ion Collider, slated to start around 2030. Researchers note that RHIC-honed


  • Fajr
  • Sunrise
  • Dhuhr
  • Asr
  • Maghrib
  • Isha

Read more

This website, walaw.press, uses cookies to provide you with a good browsing experience and to continuously improve our services. By continuing to browse this site, you agree to the use of these cookies.