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利用光频梳实现原子量子比特纠缠。

Entanglement of atomic qubits using an optical frequency comb.

机构信息

Joint Quantum Institute, Department of Physics, University of Maryland and National Institute of Standards and Technology, College Park, Maryland 20742, USA.

出版信息

Phys Rev Lett. 2010 Apr 9;104(14):140501. doi: 10.1103/PhysRevLett.104.140501. Epub 2010 Apr 5.

Abstract

We demonstrate the use of an optical frequency comb to coherently control and entangle atomic qubits. A train of off-resonant ultrafast laser pulses is used to efficiently and coherently transfer population between electronic and vibrational states of trapped atomic ions and implement an entangling quantum logic gate with high fidelity. This technique can be extended to the high field regime where operations can be performed faster than the trap frequency. This general approach can be applied to more complex quantum systems, such as large collections of interacting atoms or molecules.

摘要

我们展示了如何使用光频梳来实现原子量子比特的相干控制和纠缠。利用一系列离共振超快激光脉冲,可以有效地将囚禁离子的电子态和振动态之间的布居相干转移,并以高保真度实现纠缠量子逻辑门。这项技术可以扩展到更高的场强范围,在那里操作可以比陷阱频率更快地进行。这种通用方法可以应用于更复杂的量子系统,如大量相互作用的原子或分子。

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