ETH Zurich's new quantum chip stores data the way a guitar stores a note, using vibrations, with a simple caveat: it can play ...
Quantum computers still face limits when it comes to storing information. Researchers at ETH Zurich are now turning to ...
Waves don’t just shape oceans or ripple across a pond. They also shape the building blocks of our universe—light, sound, and even the tiny vibrations inside atoms and molecules. These vibrations, ...
Swiss researchers have developed a new type of quantum computer chip that stores data ...
Rice University scientists have discovered a way to make tiny vibrations, called phonons, interfere with each other more strongly than ever before. Using a special sandwich of silver, graphene, and ...
Add Yahoo as a preferred source to see more of our stories on Google. Researchers built a chip that can split single phonons—the smallest units of vibration. (CREDIT: AI-generated image / The Brighter ...
Radiation pressure force is exerted on a surface when it is struck by electromagnetic waves, such as light. Over the past few decades, physicists have used light’s radiation pressure to manipulate the ...
Quantum materials could transform technologies ranging from powerful computers and ultrasecure communications to advanced ...
Add Yahoo as a preferred source to see more of our stories on Google. Scientists in Germany have shed light on how nanoscale imaging techniques like tip-enhanced Raman spectroscopy (TERS) can be ...
Quantum spectroscopy of molecular vibrations harnesses quantum‐mechanical techniques to probe and characterise the vibrational energy levels of molecules. By combining high‐resolution infrared, Raman ...
Imagine shining a flashlight across a dark room. You can predict exactly what the light will do: travel in a straight line ...