NewsLayer

Install NewsLayer

Get the app experience — one tap from your home screen, instant loads and breaking-news alerts.

NewsLayer.com
LatestDaily BriefMarkets
NewsLayer PulseLIVE₿BTC$76,880+0.76%ΞETH$2,460+1.38%◎SOL$102.56+3.28%✕XRP$1.31+0.51%ÐDOGE$0.0828+2.37%₳ADA$0.2134+9.41%Total Cap$2.76T+1.24%24H Vol$124.5BLayer Index58 Neutral
BreakingCrypto’s Next Risk Regime Is Being Priced Through Security, Not Hypeil y a 3 heures
Markets
HomeQuantum

Quantum

Oxford Physicists Help Uncover ‘Spooky’ Quantum Effect in The Large Hadron Collider

Insider Brief PRESS RELEASE — Physicists at the University of Oxford have helped confirm that one of the strangest phenomena in physics – quantum entanglement – occurs even among some of the heaviest and most fleeting particles ever…

Matt Swayne

Publisher The Quantum Insider

Sep 15, 2026 at 1:13 PM UTC · Updated il y a 3 jours · 5 min de lecture

Oxford Physicists Help Uncover ‘Spooky’ Quantum Effect in The Large Hadron Collider
Image via The Quantum Insider
Traduction…

Insider Brief

  • ATLAS researchers found strong evidence of quantum entanglement between pairs of short-lived Z bosons produced by Higgs boson decays at CERN’s Large Hadron Collider.
  • The team inferred the Z bosons’ spins by analyzing the angles of the electrons and muons produced when the bosons decayed.
  • The findings provide one of the highest-energy confirmations of entanglement and could support more sensitive methods for analyzing particle-collider data.
  • Image: The Large Hadron Collider (LHC) accelerator in the tunnel at CERN. (© 2009-2026 CERN)

PRESS RELEASE — Physicists at the University of Oxford have helped confirm that one of the strangest phenomena in physics – quantum entanglement – occurs even among some of the heaviest and most fleeting particles ever created. The discovery, made using the world’s most powerful particle collider at CERN, has been published in Physical Review Letters.

Entanglement is the phenomenon in which two particles from the same origin remain connected, even if they move far apart in time and space. If something affects one particle, it will also affect all the particles with which it is entangled. This means that measuring a property of one particle instantly tells you something about its entangled partner/s, no matter how distant they are.

Article Intelligence

Topics

quantum

Sponsored

Ad
House — Advertise on NewsLayer
NewsLayerLearn more

NewsLayer Premium

Unlock deeper intelligence.

Ad-free reading, exclusive research, and real-time onchain insights.

Go Premium
NewsLayer.com

The front page of the onchain economy. Crypto, Web3 and regulation intelligence — live prices, original research and policy tracking in one layer.

Follow on XTelegram

News

  • Latest News
  • The Daily Brief
  • Crypto
  • DeFi
  • Policy
  • Web3
  • Blockchain
  • Explainers

Markets

  • Market News
  • Layer Index
  • Live Charts
  • DeFi Protocols
  • Regulation Tracker
  • Regulation Radar

Company

  • About NewsLayer
  • Advertise
  • PR Publication
  • Become an Author
  • Our Authors
  • Create Account
  • Sign in

Resources

  • Research
  • NewsLayer Originals
  • My Feed
  • Search
  • AI Sector
  • Quantum Sector

NewsLayer Premium

Read the full layer.

Unlock premium intelligence, original research and an ad-free reading experience.

  • Premium Intelligence briefings
  • Ad-free reading experience
  • Members-only research & data
Go Premium

© 2026 NewsLayer.com — The front page of the onchain economy

Privacy Policy·Terms of Service
NewsLayer

Get the signal, not the noise.

Markets, regulation and onchain intelligence in a 5-minute morning read — plus breaking alerts and Layer Index flips as they happen.

The Daily Brief

Breaking alerts

Index flips

Free · No spam · Unsubscribe anytime