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Scheme for Deterministic Loading of Laser-Cooled Molecules into Optical Tweezers

Atomic Physics 2024-05-16 v4 Quantum Gases Chemical Physics Quantum Physics

Abstract

We propose to repeatedly load laser-cooled molecules into optical tweezers, and transfer them to storage states that are rotationally excited by two additional quanta. Collisional loss of molecules in these storage states is suppressed, and a dipolar blockade prevents the accumulation of more than one molecule. Applying three cycles loads tweezers with single molecules at an 80% success rate, limited by residual collisional loss. This improved loading efficiency reduces the time needed for rearrangement of tweezer arrays, which would otherwise limit the scalability of neutral molecule quantum computers.

Keywords

Cite

@article{arxiv.2401.06028,
  title  = {Scheme for Deterministic Loading of Laser-Cooled Molecules into Optical Tweezers},
  author = {Etienne F. Walraven and Michael R. Tarbutt and Tijs Karman},
  journal= {arXiv preprint arXiv:2401.06028},
  year   = {2024}
}

Comments

Published with Physical Review Letters. Updated arXiv reference

R2 v1 2026-06-28T14:14:26.702Z