Cesium atomic clocks are some of the most accurate time-keeping devices ever made, but the newest generation of clocks render ...
Quantum computing stocks have spent years asking investors to assign a huge value to technology whose biggest commercial prospects may lie sometime in the future. IonQ (IONQ) just received something ...
IonQ has secured a $28 million contract extension from the Defense Advanced Research Projects ...
Optical atomic clock production enters a new era as DARPA awards IonQ a $28 million contract extension, with an additional $30 million unexercised option, to manufacture 125 Evergreen-05 ...
The advantage of a radio-controlled clock that receives the time signal from WWVB is that you never have to set it again. Whether it’s a little digital job on your desk, or some big analog wall clock ...
Learn more IonQ (IONQ) received a $28 million contract extension from the Defense Advanced Research Projects Agency, or DARPA, with an unexercised $30 million option, to expand production of its ...
DARPA selected IonQ to create a manufacturing pipeline for rugged optical atomic clocks that could preserve precise military ...
Atomic clocks are a class of clocks that leverage resonance frequencies of atoms to keep time with high precision. While these clocks have become increasingly advanced and accurate over the years, ...
Yuan-Yu Jau is on a quest to build the world's smallest atomic clock, a device that measures time with extreme accuracy. If successful, he and his team at Sandia will have made one smaller than a ...
For decades, physicists have pursued a goal that sounds nearly impossible: to build a clock that keeps time using an atom's nucleus rather than the electrons orbiting it. "Having worked in this field ...
Find the latest Atomic Clock news from WIRED. See related science and technology articles, photos, slideshows and videos.
For decades, scientists have tried to build a device even more precise than an atomic clock, which keeps time using electrons, the negatively charged particles that whiz around in an atom. Now, two ...