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Quantum logic gates with neutral atoms in an optical lattice

机译:在光学晶格中具有中性原子的量子逻辑门

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Quantum logic gates require qubits that can interact strongly with each other and with external fields while minimizing unwanted coupling to the decohering environment. Neutral atoms trapped in a far-off resonance optical lattice satisfy these criteria. The adjustable parameters of the lattice (e.g., laser polarization, frequency, intensity) allow one to design interactions for which atoms interact strongly via dipole-dipole interactions during logical interactions but otherwise are isolated from each other and the environment. Dissipation arising from spontaneous photon scattering can be suppressed to an arbitrary degree given sufficient laser power and large detuning from atomic resonance. Thus, by bringing two atoms in close proximity, one can simultaneously achieve strong coherent coupling with small photon scattering rates.
机译:量子逻辑门需要量子位,这些量子位可以彼此之间以及与外部场之间进行强烈交互,同时最大程度地减少与去相干环境的耦合。陷在遥远的共振光学晶格中的中性原子满足这些条件。晶格的可调节参数(例如,激光偏振,频率,强度)允许人们设计相互作用,在逻辑相互作用期间原子通过偶极-偶极相互作用而强烈相互作用,但是在其他方面彼此隔离并且与环境隔离。如果有足够的激光功率和与原子共振的大失谐,可以将自发光子散射引起的耗散抑制到任意程度。因此,通过使两个原子非常接近,可以同时以较小的光子散射速率实现强相干耦合。

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