Physicists create quantum sensor for the atomic lattice scale
Physicists unveil a molecular-scale quantum sensor that images atomic magnetic fields with unprecedented resolution, using a single molecule on an STM tip
Physicists unveil a molecular-scale quantum sensor that images atomic magnetic fields with unprecedented resolution, using a single molecule on an STM tip
MIT researchers combine neural networks with plasma physics to predict rampdown in tokamaks, validated on TCV device to reduce disruptions and speed rampdown
Researchers are achieving unprecedented levels of precision in measuring the energies released during nuclear decay, employing a suite of advanced…
Researchers have successfully harnessed a powerful, chaotic laser and transformed its output into dozens of distinct, high-quality colors on a…
John Clarke, Michel H. Devoret, and John M. Martinis have been awarded the 2025 Nobel Prize in Physics for their…
Speculation ahead of the Nobel Prize in Physics announcement has centered on two disparate but transformative fields: the mathematical theories…
The global physics community awaits the announcement from the Royal Swedish Academy of Sciences in Stockholm, where the next Nobel…
Researchers have developed a novel method for manipulating light by integrating the principles of metasurfaces directly with waveguide physics. This…
A sophisticated mathematical tool that physicists have long used to understand the universe might be more than just a convenient…
Researchers capture real-time quantum uncertainty dynamics at attosecond resolution, using four-wave mixing to switch squeezing between amplitude and phase