Projects
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![a small electronic chip is illuminated with red laser light.](/sites/default/files/styles/list/public/project/image/2022-06/Atomic-clock.png?itok=pL1cHcWv)
Compact Optical Trapped-Ion Array Clock
Optical atomic clocks are the most accurate in the world, but they are very large, sensitive instruments. We are transforming the complex components of these clocks into a compact, portable platform.
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![The high-rate, entangled-photon source technologies will be integrated into the optical fiber quantum network test bed.](/sites/default/files/styles/list/public/project/image/2018-04/Quantum_Source.jpg?itok=NHhuvkBt)
Quantum Network Test Bed
Lincoln Laboratory and MIT researchers are creating a shared quantum network test bed that will be used for developing and realistic testing of applications that take advantage of quantum science's potential to enable diverse, advanced communication, sensing, and computing systems.
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![Photomicrograph of superconducting single-flux-quantum (SFQ) shift-register integrated circuit fabricated at Lincoln Laboratory.](/sites/default/files/styles/list/public/project/image/2018-03/GOMAC_sc_PCM411_Shift%20Register%2810%29.jpg?itok=6WwXYj2g)
Superconducting Electronics
The world's most advanced single-flux-quantum (SFQ) integrated circuit process has been developed here at Lincoln Laboratory.
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