Multi-ensemble metrology by programming local rotations with atom movements

  • Shaw, Adam L.; 
  • Finkelstein, Ran; 
  • Tsai, Richard Bing-Shiun; 
  • Scholl, Pascal; 
  • Yoon, Tai Hyun; 
  • 외 2명
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초록

Current optical atomic clocks do not utilize their resources optimally. In particular, an exponential gain in sensitivity could be achieved if multiple atomic ensembles were to be controlled or read out individually, even without entanglement. However, controlling optical transitions locally remains an outstanding challenge for neutral-atom-based clocks and quantum computing platforms. Here we show arbitrary, single-site addressing for an optical transition via sub-wavelength controlled moves of atoms trapped in tweezers. The scheme is highly robust as it relies only on the relative position changes of tweezers and requires no additional addressing beams. Using this technique, we implement single-shot, dual-quadrature readout of Ramsey interferometry using two atomic ensembles simultaneously, and show an enhancement of the usable interrogation time at a given phase-slip error probability. Finally, we program a sequence that performs local dynamical decoupling during Ramsey evolution to evolve three ensembles with variable phase sensitivities, a key ingredient of optimal clock interrogation. Our results demonstrate the potential of fully programmable quantum optical clocks even without entanglement and could be combined with metrologically useful entangled states in the future. Addressing optical transitions at the level of a single site is crucial to unlock the potential of quantum computers and atomic clocks. A scheme based on atom rearrangement now demonstrates such control with demonstrable metrological benefits.

키워드

QUANTUM; CLOCK; ENTANGLEMENT; TRANSPORT; QUBIT
제목
Multi-ensemble metrology by programming local rotations with atom movements
저자
Shaw, Adam L.; Finkelstein, Ran; Tsai, Richard Bing-Shiun; Scholl, Pascal; Yoon, Tai Hyun; Choi, Joonhee; Endres, Manuel
DOI
10.1038/s41567-023-02323-w
발행일
2024-01-15
유형
Article; Early Access
저널명
Nature Physics
권
20
호
2
페이지
195 ~ 201