My research uses a fundamental understanding of microbiology, chemistry, and physics to improve water quality and human health.


By controlling the quantum state of atoms on the nanoscale, extremely precise measurements can be obtained for macroscopic quantities. Atom interferometry using Bose-Einstein condensation is a powerful method for achieving this goal.


Our long-term goal is to exploit the unique targeting properties of contrast ultrasound in developing therpaeutic nanomedicine strategies for the improved treatment of limb claudication, myocardial ischemia, and solid tumors with poor surgical accessibility.


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