Tinkey Holly N, Clark Craig R, Sawyer Brian C, Brown Kenton R
Georgia Tech Research Institute, Atlanta, Georgia 30332, USA.
Phys Rev Lett. 2022 Feb 4;128(5):050502. doi: 10.1103/PhysRevLett.128.050502.
We implement a 2-qubit entangling Mølmer-Sørensen interaction by transporting two cotrapped ^{40}Ca^{+} ions through a stationary, bichromatic optical beam within a surface-electrode Paul trap. We describe a procedure for achieving a constant Doppler shift during the transport, which uses fine temporal adjustment of the moving confinement potential. The fixed interaction duration of the ions transported through the laser beam as well as the dynamically changing ac Stark shift require alterations to the calibration procedures used for a stationary gate. We use the interaction to produce Bell states with fidelities commensurate to those of stationary gates performed in the same system. This result establishes the feasibility of actively incorporating ion transport into quantum information entangling operations.
我们通过在表面电极保罗阱中,将两个共俘获的(^{40}Ca^{+})离子传输通过一束静止的双色光束,来实现两比特纠缠的莫尔默 - 索伦森相互作用。我们描述了一种在传输过程中实现恒定多普勒频移的方法,该方法利用了移动限制势的精细时间调整。离子通过激光束传输时固定的相互作用持续时间以及动态变化的交流斯塔克频移,要求对用于静态门的校准程序进行修改。我们利用这种相互作用产生保真度与在同一系统中执行的静态门相当的贝尔态。这一结果确立了将离子传输主动纳入量子信息纠缠操作的可行性。