Edition No. 48 · GlobalEst. 2026

30 days left in your free trial. Subscribe now — just $10/month.

S&P 5007,706.03+2.04%Dow Jones51,511.59+0.10%Nasdaq26,936.04+3.69%FTSE 10010,718.93-0.90%DAX25,357.94-1.40%Nikkei 22565,513.99+3.20%Hang Seng24,761.13+0.64%EUR/USD1.1371-0.91%GBP/USD1.3222-1.02%Gold4,304.40-1.81%Crude Oil93.58-2.30%Bitcoin83,538.32+2.95%S&P 5007,706.03+2.04%Dow Jones51,511.59+0.10%Nasdaq26,936.04+3.69%FTSE 10010,718.93-0.90%DAX25,357.94-1.40%Nikkei 22565,513.99+3.20%Hang Seng24,761.13+0.64%EUR/USD1.1371-0.91%GBP/USD1.3222-1.02%Gold4,304.40-1.81%Crude Oil93.58-2.30%Bitcoin83,538.32+2.95%

Scientists Achieve Quantum Entanglement Using Natural Sunlight

New research demonstrates that sunlight can generate quantum entanglement, potentially reducing the need for high-energy lasers in future technology.

De Planet Earth News Science & Technology Desk· Publikigita 2026-08-21· 2 min read
PENN Explainer

Hear this story explained in 90 seconds.

Researchers have successfully generated quantum entanglement using natural sunlight, marking a significant departure from traditional methods that rely on high-energy lasers. This breakthrough, reported in August 2026, suggests that the fundamental building blocks of quantum technology could be harnessed more efficiently. By utilizing the sun as a light source, scientists have opened the door to lower-energy alternatives for quantum systems. The experiment demonstrated that entangled photons could be produced with approximately 94% similarity, a level of precision that rivals current laser-based techniques. This development is considered a landmark achievement in the field of quantum physics. The ability to generate entanglement from ambient light could simplify the infrastructure required for future quantum networks. Currently, most quantum experiments require complex and expensive laser setups to create the necessary conditions for entanglement. By removing this requirement, researchers hope to make quantum technology more accessible and sustainable for widespread use. The study highlights how natural phenomena can be repurposed to advance modern computing and communication. Experts believe this discovery could lead to more portable and energy-efficient quantum devices. As the global scientific community continues to explore the potential of quantum mechanics, this finding provides a new pathway for innovation. The research team emphasized that while the experiment was conducted outdoors, the results are highly promising for laboratory applications. Further studies are expected to refine the process and explore its integration into existing quantum hardware. This advancement represents a significant step forward in the ongoing effort to transition quantum technology from theoretical research to practical, real-world deployment.
Ask the Author

Subscribers can ask the journalist a question about this story. Subscribe to ask.

Neŭtraleca noto

Auto-harvested from global news wires and presented neutrally by PENN.

Share this article

to vote

Comments

No comments yet — be the first to share your thoughts.

Related stories in Science & Technology