
scienceMar 16, 202636:58pending
Quantum Entanglement Could Turn Telescopes into a Giant Super-Array
About this episode
Researchers have proposed a new technique that uses quantum entanglement to link distant telescopes, bypassing the physical limits of traditional interferometry. Instead of transporting light through complex optical systems, the method relies on quantum correlations and classical communication to merge observational data.
With quantum memories and spatial mode separation, the network could function as a single giant telescope—delivering unprecedented resolution for observing stars and exoplanets, and redefining the future of astrophysics.
This episode includes AI-generated content.
With quantum memories and spatial mode separation, the network could function as a single giant telescope—delivering unprecedented resolution for observing stars and exoplanets, and redefining the future of astrophysics.
This episode includes AI-generated content.
Get every episode summarized
Each time The Quark Side - Quantum Physics Podcast publishes, we email you a written briefing from the transcript — the topics, who appeared, and any specific claims, with the ad reads skipped.
Email me new episodesFree for 3 shows. No card needed.
Hosts & guests
No transcript yet
This episode has not been transcribed. Request it and it moves to the front of the queue.
More episodes
More from The Quark Side - Quantum Physics Podcast

Flower States Reveal a Hidden Asymmetry in the Quantum World
The Quark Side - Quantum Physics Podcast
Sep 14, 202624:08completed

A New Breakthrough in the Physics of Quantum Entanglement
The Quark Side - Quantum Physics Podcast
Sep 13, 202624:08completed

Scientists Discover Particles That Break Newton’s Third Law
The Quark Side - Quantum Physics Podcast
Sep 12, 202621:51pending

Quantum Matter Is Changing in Ways Scientists Never Saw Before
The Quark Side - Quantum Physics Podcast
Sep 11, 202617:49pending