Projects
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![a researcher looks through a small window on a large metal multichambered molecular beam epitaxy tool.](/sites/default/files/styles/list/public/project/image/2022-12/522734-001D.jpg?h=41f55a5b&itok=CoTil7hf)
Materials by Design
A new approach to materials discovery aims to expedite the process of deploying new materials for specific mission needs.
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![a wire in wound up in a spool. The wire appears to be cooper and has red LEDs lit up throughout it.](/sites/default/files/styles/list/public/project/image/2022-05/523546-001D.jpg?itok=drVFNK6N)
Fiber Sensor Array Buoy
A small, low-cost system that leverages long-length fibers embedded with electronics could provide persistent monitoring of the undersea environment.
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Diamond Magnetometer
Engineered diamonds show promising capability for use in quantum sensing of magnetic fields.
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![Three step progression of material in self repair, from cracked, to processing, to fully repaired.](/sites/default/files/styles/list/public/project/image/2020-09/self-healing_composite.jpg?itok=S7mkV63_)
Self-Healing Materials for Vibration Damping
New materials that are chemically inspired by nature could be tailored at the molecular level to dissipate vibrations in microsystems. Materials that can survive repeated external stresses could enable a next generation of enhanced microsystems.
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![A zoomed-in view of a metal nozzle shooting a stream of orange onto a metal surface, and a nozzle shooting a stream of purple at the orange stream of material.](/sites/default/files/styles/list/public/project/image/2020-03/microplasma-sputter-2.png?itok=wkKtyp26)
Microplasma Sputterer
A novel method for manufacturing interconnects could open the door for 3D-printed microelectronic systems.
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