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News

The Economic Times
economictimes.indiatimes.com > news > international > us > science-in-2000-sandia-used-a-416-nanometer-cheesecloth-like-crystal-to-bend-infrared-light-with-little-loss-26-years-later-the-approach-still-guides-research-into-faster-cooler-photonic-chips > articleshow > 133544331.cms

In 2000, Sandia used a 416-nanometer cheesecloth-like crystal to bend infrared light with little loss. 26 years later, the approach still guides research into faster, cooler photonic chips

7+ hour, 7+ min ago   (321+ words) In 2000, Sandia used a 416-nanometer cheesecloth-like crystal to bend infrared light with little loss. 26 The Economic Times In 2000, researchers at the Department of Energy's Sandia National Laboratories demonstrated a tiny structure that could bend infrared light with very little loss…...

Universe Today
universetoday.com > articles > scientists-melted-a-diamond-and-cracked-a-secret-of-ice-giants

Scientists Melted A Diamond and Cracked a Secret of Ice Giants

3+ hour, 33+ min ago   (110+ words) Some of the strangest weather in the solar system doesn’t happen on Earth, or even Jupiter’s Great Red Spot - it happens in the interior of the Ice Giants like Neptune and Uranus. Specifically, scientists have long believed that, at certain…...

Daily Beirut
dailybeirut.com > en > technology-and-science > world-first-free-space-optical-link-uses-topology-distortion-free-data

Wits-Bordeaux Team Achieves 98% Fidelity in Topological Light

9+ hour, 6+ min ago   (523+ words) Researchers from Wits University and the University of Bordeaux demonstrated a world-first free-space optical transmission method using topological light structures, achieving over 98% data fidelity across 270 meters of turbulent open air. Over 98 percent of transmitted data remained intact during a landmark…...

ScienceAlert
sciencealert.com > forget-acid-rain-electrically-charged-raindrops-can-corrode-metal-in-a-way-we-never-knew-about

Forget Acid Rain: Electrically Charged Raindrops Can Corrode Metal in a Way We Never Knew About

4+ hour, 1+ min ago   (655+ words) Metals everywhere need to be protected from corrosion, from beloved cars to iconic buildings, sculptures, and ships. However, according to new research, there's a source of corrosion we didn't know about – and haven't been accounting for. That source is electrically…...

Coinfomania
coinfomania.com > ethereum-foundations-research-on-quantum-security-gains

Ethereum Foundation's Research on Quantum Security Gains

5+ hour, 8+ min ago   (145+ words) Ethereum Foundation emphasizes its research to counter quantum threats. This initiative could reshape crypto security—read more for insights. Post-quantum cryptography insights shared in Edge Pod series. No quantum computers exist yet, but research is ongoing. As of now, Ethereum’s…...

Popular Mechanics
popularmechanics.com > science > a73/51/4042 > diamond-nanotube

Scientists Just Created a Virtually Indestructible Diamond

38+ min ago   (99+ words) Diamonds are well-known as the hardest, naturally-occurring mineral on Earth, but they’re still as brittle as glass. Well, not anymore. Divers Raised Henry VIII’s Lost Warship A Sacred Well Hid Something Nobody Expected We’re on Track for Reaching Singularity by…...

EurekAlert!
eurekalert.org > news-releases > 1141550

Observing the vibrations of neighboring atoms with an atomic-scale double slit

6+ hour, 13+ min ago   (272+ words) One ten-millionth the scale of Young’s experiment; expected to contribute to semiconductor heat dissipation design image: (a) The classical double-slit experiment performed by Young using light (slit spacing ~1 mm, propagation distance ~1 m). (b) Schematic of atomic-scale interference in which a…...

Interesting Engineering
interestingengineering.com > science > wireless-devices-highly-tunable-frequencies

Tiny atomic changes could make future wireless devices more flexible

5+ hour, 1+ min ago   (447+ words) Scientists at the Queen Mary University of London have found a new way to build smart wireless devices by making small atomic changes to the structure of a material, paving the way for a new generation of communication devices that…...

BIOENGINEER.ORG
bioengineer.org > defect-engineering-and-nickel-synergize-to-accelerate-ruthenium-catalyzed-dicyclopentadiene-hydrogenation

Defect Engineering and Nickel Synergize to Accelerate Ruthenium-Catalyzed

1+ hour, 9+ min ago   (736+ words) Dicyclopentadiene Hydrogenation Bioengineer.org...