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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Quantum ratchets for quantum communication with optical superlattices
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Quantum ratchets for quantum communication with optical superlattices

机译:用于与光学超晶格进行量子通信的量子棘轮

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We propose to use a quantum ratchet to transport quantum information in a chain of atoms trapped in an optical superlattice. The quantum ratchet is created by a continuous modulation of the optical superlattice which is periodic in time and in space. Though there is zero average force acting on the atoms, we show that indeed the ratchet effect permits atoms on even and odd sites to move along opposite directions. By loading the optical lattice with two-level bosonic atoms, this scheme permits us to perfectly transport a qubit or entangled state imprinted in one or more atoms to any desired position in the lattice. From the quantum computation point of view, the transport is achieved by a smooth concatenation of perfect swap gates. We analyze setups with noninteracting and interacting particles and in the latter case we use the tools of optimal control to design optimal modulations. We also discuss the feasibility of this method in current experiments.
机译:我们建议使用量子棘轮在被捕获在光学超晶格中的原子链中传输量子信息。量子棘轮是通过对光学超晶格进行连续调制而产生的,该调制在时间和空间上是周期性的。尽管作用在原子上的平均力为零,但是我们证明了棘轮效应确实允许偶数和奇数位点上的原子沿相反的方向移动。通过在光学晶格中加载两级玻色子原子,该方案可以使我们完美地将一个或多个原子上印制的量子位或纠缠态传输到晶格中的任何所需位置。从量子计算的角度来看,传输是通过完美交换门的平滑连接实现的。我们分析具有非相互作用和相互作用粒子的设置,在后一种情况下,我们使用最佳控制工具来设计最佳调制。我们还将讨论该方法在当前实验中的可行性。

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