Article may be outdated

This article is 71 days old. Some details may have changed since publication.

Phys.org·4 min read·hard

From quantum error correction to emergent gravity: Probing holographic universes at QLab

D
Duke University
From quantum error correction to emergent gravity: Probing holographic universes at QLab
✦AI Summary

Researchers from QLab and other institutions have successfully simulated quantum gravity models using an IonQ quantum computer. The study utilizes the AdS/CFT correspondence to explore how space-time fabric emerges from quantum entanglement.

Why it matters

Advancements in quantum simulation are essential for bridging the gap between quantum computing and fundamental theoretical physics.

✦Dive DeeperCreate a free account to unlock

edited by Lisa Lock , reviewed by Robert Egan

This article has been reviewed according to Science X's editorial process and policies . Editors have highlighted the following attributes while ensuring the content's credibility:

Add as preferred source arXiv2607.12047_fig1. Credit: QLab One of the deepest ambitions in modern physics is understanding how the fabric of space and time could emerge from fundamental quantum degrees of freedom to establish a quantum theory of gravity.

Continue reading on Headlinne

Create a free account to read the full article.

Read full article →
sciencetechnology
✦

Get smarter about the news

Sign up free for a feed built around what you actually care about, Dive Deeper research on any story, and the full text of every article.

Create free account

Already have an account? Sign in