In a first-of-its-kind experiment, researchers have captured quantum uncertainty in real time using ultrafast pulses of light. Nearly a century after Werner Heisenberg proposed the uncertainty ...
Can you squeeze light into a space hundreds of times smaller than its natural wavelength? It sounds impossible, but a new study reveals a way to do just that using exotic waves called Dirac plasmon ...
Light Publishing Center, Changchun Institute of Optics, Fine Mechanics And Physics, CAS Bright squeezed light, exhibiting sub-shot-noise quantum noise combined with significant optical power, is ...
Highly anticipated: Scientists at the University of Arizona have demonstrated a method to capture and manipulate quantum uncertainty in real time using rapid pulses of light, marking what they ...
Researchers from the University of Arizona, working with an international team, have captured and controlled quantum uncertainty in real time using ultrafast pulses of light. Their discovery, ...