Coherent Addressing of Individual Neutral Atoms in a 3D Optical Lattice
Yang Wang, Xianli Zhang, Theodore A. Corcovilos, Aishwarya Kumar, David S. Weiss
Abstract
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Yang Wang, Xianli Zhang, Theodore A. Corcovilos, Aishwarya Kumar, David S. Weiss
Abstract
Open-access reader
We demonstrate arbitrary coherent addressing of individual neutral atoms in a 5×5×5 array formed by an optical lattice. Addressing is accomplished using rapidly reconfigurable crossed laser beams to selectively ac Stark shift target atoms, so that only target atoms are resonant with state-changing microwaves. The effect of these targeted single qubit gates on the quantum information stored in nontargeted atoms is smaller than 3×10^{-3} in state fidelity. This is an important step along the path of converting the scalability promise of neutral atoms into reality.
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We demonstrate arbitrary coherent addressing of individual neutral atoms in a 5×5×5 array formed by an optical lattice. Addressing is accomplished using rapidly reconfigurable crossed laser beams to selectively ac Stark shift target atoms, so that only target atoms are resonant with state-changing microwaves. The effect of these targeted single qubit gates on the quantum information stored in nontargeted atoms is smaller than 3×10^{-3} in state fidelity. This is an important step along the path of converting the scalability promise of neutral atoms into reality.
Key concepts: Energetic neutral atom, Optical lattice, Qubit, Atomic physics, Physics, Lattice (music), Microwave, Scalability