This is an infographic-based KAUST Discovery story. The content of the release is in the form of two images and captions that accompany.
Image 1. Sigurdur Thoroddsen and his team from KAUST set up an experiment to test whether bubble formation would be suppressed at lower air pressures. The team created a vacuum chamber equipped with a high-speed camera to observe droplet bubble formation (image left). “Reducing the air pressure had many advantages, including decreasing the bubble size and suppressing splashing,” says Kenneth Langley,Thoroddsen’s Ph.D. student. But there’s a sweet spot, he adds. “We discovered that if you reduce the pressure too much, you will entrain more gas bubbles than at higher pressures.”
Image 2. At these low pressures, the team observed the usual central disk of air is trapped, but the droplet then unexpectedly trapped a second, outer ring of air, which quickly collapsed into individual bubbles (below image; from left to right, high-speed camera images captured 0.1 microseconds, 1.3 microseconds and 18 microseconds after first contact of the liquid droplet on the glass platform).