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Mesoscopic Rydberg Gate Based on Electromagnetically Induced Transparency

机译:基于电磁感应透明度的介观里德堡门

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摘要

We demonstrate theoretically a parallelized C-NOT gate which allows us to entangle a mesoscopic ensemble of atoms with a single control atom in a single step, with high fidelity and on a microsecond time scale. Our scheme relies on the strong and long-ranged interaction between Rydberg atoms triggering electromagnetically induced transparency. By this we can robustly implement a conditional transfer of all ensemble atoms between two logical states, depending on the state of the control atom. We outline a many-body interferometer which allows a comparison of two many-body quantum states by performing a measurement of the control atom.
机译:我们在理论上演示了并行化的C-NOT门,它使我们能够在单个步骤中以高保真度和微秒级的时间将原子的介观原子与单个控制原子纠缠在一起。我们的方案依赖于Rydberg原子之间强烈且长距离的相互作用,从而触发电磁感应的透明性。通过这种方式,我们可以根据控制原子的状态可靠地实现两个逻辑状态之间所有集合原子的条件转移。我们概述了一种多体干涉仪,该干涉仪可以通过对控制原子进行测量来比较两个多体量子态。

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