Every second of modern life runs on precision — from GPS navigation to the time signals that keep the internet in sync. But ...
The Register on MSN
MIT boffins double precision of atomic clocks by taming quantum noise
Global phase spectroscopy' makes ultraprecise optical timekeepers even more precise Researchers at MIT say they have ...
Scientists from the Massachusetts Institute of Technology (MIT) in the U.S. have made a groundbreaking achievement after they captured the first images of individual atoms freely interacting in space.
MIT physicists have taken the first-ever direct images of individual atoms interacting freely in space. Their findings, published in the journal Physical Review Letters, reveal hidden quantum ...
MIT physicists improved the stability of optical atomic clocks by reducing “quantum noise” — a fundamental measurement ...
Interesting Engineering on MSN
MIT physicists double precision of optical atomic clocks with new quantum method
A tomic clocks, which power GPS, online transactions, and data networks, just became more precise. MIT physicists have developed a technique that doubles the accuracy of optical atomic clocks by ...
Mostafa Fawzy became interested in physics in high school. It was the "elegance and paradox" of quantum theory that got his attention and led to his ...
4don MSN
From artificial atoms to quantum information machines: Inside the 2025 Nobel Prize in physics
The 2025 Nobel Prize in physics honors three quantum physicists—John Clarke, Michel H. Devoret and John M. Martinis—for their ...
From personalized vaccines to next-generation screening technologies, the ways the world treats and detects cancer could shift dramatically in the coming years. But there are many challenges ahead, as ...
Atlantic Quantum has received a contract from the US Air Force to develop a quantum computer based on fluxonium qubits. The company has been given a $1.8 million Phase II STTR grant from AFWERX, the ...
Researchers evaluated quantum materials' potential for scalable commercial success - and identified promising candidates.
Some results have been hidden because they may be inaccessible to you
Show inaccessible results