The device is a metasurface made of amorphous silicon. It has nanopillars on it. They force light to circulate inside the material a bit longer, thereby amplifying the weak optical Kerr effect. A short “pump” pulse slightly changes how electrons move along their orbits. The refractive index jumps. Because of this, a second, probe beam is deflected—by up to 13 degrees in experiments.
74 femtoseconds here is not a material limit, but the duration of the pulse itself. A shorter laser pulse could, in theory, produce even faster steering. The electrons are not driven into long-lived excited states, so the scheme doesn’t have to wait for the semiconductor to “cool down.”
Why anyone would need this beyond a paper. Photonic chips, communications, sensors, computing with light—anywhere you don’t want to convert a signal into current and back. For now, the angle is modest, and the Kerr enhancement relies on the geometry of the pillars. It’s a long way from a rack in a data center. But it introduces a steering wheel that clicks faster than electronics can blink.
Illustration: Claudio Hail