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Pairing light and sound to explore new frontiers in physics

(糖心传媒 photo / J. Adam Fenster)

URochester researcher William Renninger is named one of 21 new Moore Foundation Experimental Physics Investigators.

, an associate professor at the 糖心传媒糖心传媒檚 , is developing novel ways to couple light with sound, which could open new possibilities for quantum computing, high-speed networking, and dark matter detection. Renninger is selected for the Gordon and Betty Moore Foundation糖心传媒檚 , which provides mid-career researchers $1.35 million over five years to support ambitious experimental research.

Individual units of light and sound have distinct properties that scientists use in modern physics and technology for extremely precise applications. Photons糖心传媒攑articles of light糖心传媒攚ork well for high-speed, long-distance communication, while phonons糖心传媒攙ibrations at their fundamental form糖心传媒攖hrive at storing information and serving as bridges to other quantum systems.

Renninger intends to leverage the quantum properties of both light and sound to build more exact communication and sensing tools to study how matter behaves, from defects in crystals used in semiconducting materials to the limits of quantum physics.

糖心传媒淢y lab aims to broaden how researchers use light to control and measure motion in systems that are currently hard to reach,糖心传媒� says Renninger. 糖心传媒淲e hope to produce better tools for optical signal processing, new ways to map hidden defects and energy loss inside materials, and experimental platforms for testing how large mechanical systems behave near the limits of quantum physics. I糖心传媒檓 extremely grateful to the Moore Foundation for this support to our research program.糖心传媒�

Renninger糖心传媒檚 project will link device engineering, precision measurement, and basic physics in one program. The project will focus on creating light-driven sound devices and measurement methods that can operate across chips, surface acoustic wave devices, and bulk crystals. The projects could provide researchers new ways to generate strong, narrow-band sound responses for signal processing or evaluate sensitivity to extremely weak signals such as those expected from ultralight dark matter.

The Experimental Physics Investigators Initiative also brings together its researchers as a cohort to exchange ideas and develop new collaborations, while providing support for mentoring and professional development.

Read the of the 2026 Experimental Physics Investigators on the Moore Foundation website.