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Entangling dipole-dipole interactions in optical lattices

机译:纠缠在光学晶格中的偶极-偶极相互作用

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Summary form only given. Controlled coherent interactions between pairs of neutral atoms can be designed in tight micro-traps such as optical lattices which allow the creation of highly entangled multiparticle states. Such systems benefit from suppressed decoherence because neutrals couple weakly to the environment and the interactions are strictly pairwise. The main source of decoherence is spontaneous emission which can be made negligible if the two atom interactions are performed fast compared to the scattering rate.We have shown the possibility of using induced electric dipole-dipole interactions between pairs of atoms to perform quantum logic gates with high fidelity.
机译:仅提供摘要表格。可以在紧密的微陷阱(例如光学晶格)中设计中性原子对之间受控的相干相互作用,从而可以创建高度纠缠的多粒子态。这样的系统得益于抑制的去相干性,因为中性点与环境的耦合较弱,并且相互作用严格成对进行。退相干的主要来源是自发发射,如果两个原子相互作用比散射速率快,则可以忽略不计。我们已经证明了利用成对的原子之间的感应电偶极-偶极相互作用来执行量子逻辑门的可能性。高保真度。

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