By squeezing terahertz light beyond its usual limits, researchers have exposed hidden quantum "jiggles" inside a ...
With the terahertz scope, the team observed a frictionless “superfluid” of superconducting electrons that were collectively ...
MIT physicists have built a new microscope that can see quantum motion inside superconductors ...
You can tell a lot about a material based on the type of light shining at it: Optical light illuminates a material's surface, ...
The implications of the breakthrough could ripple through multiple industries. A better understanding of how superconductivity behaves at quantum scales could accelerate the development of ...
The superconducting gap sets the basic energy scale that allows electricity to flow without resistance in a superconductor. In high‑temperature cuprates, the paired electrons (Cooper pairs) are mostly ...
As a result, an ordinary light microscope using one of the slides is able to image much smaller objects than was previously possible. In tests conducted so far, the slide enabled such a microscope to ...