Description
Advances in atomic quantum sciences have enabled new fundamental measurements, communications and computation that existed only in theory just decades ago. Yet the underlying lasers and optical infrastructure still occupies laboratory tables and racks, are power consuming and not reliable. Photonic integration has the potential to move the laser systems and other photonics on chip. In this talk we cover moving high performance quantum and atom visible to SWIR light infrastructure and precision optics to the chip-scale and early neutral atom and trapped-ion experiments, including ultra-narrow linewidth and frequency stabilized lasers, ultra-low loss waveguides and reference cavities, frequency agile lasers, modulators, and other photonics to deliver precision laser light to atomic transitions for precision timing and and control of quantum states. Also discussed will be how these technologies can translate to other applications including ultra-low phase noise microwaves and energy efficient coherent fiber communications.
| I am the presenting author | No |
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| If you are not the presenting author, please give the presenting author's name: | Daniel J Blumenthal |