What if empty space were not really empty—and its invisible quantum activity could actually be used to improve a superconductor? In an important new experiment, an international team of researchers has demonstrated a surprising way to strengthen superconductivity by controlling quantum vacuum fluctuations . Using a specially engineered electromagnetic cavity, the researchers increased the superconducting transition temperature of niobium diselenide (NbSe₂) by as much as 5.4% . Even more remarkably, the material also became more resistant to electrical current and magnetic fields near its superconducting transition. The discovery provides the first experimental evidence that quantum vacuum fluctuations can be deliberately engineered to enhance superconductivity. It also suggests that what we normally think of as “empty space” could become a new control mechanism for manipulating quantum materials. Why Is Empty Space Not Really Empty? In everyday life, we think of a vacuum as completely...