论文标题
光子后坐力和激光聚焦限制到Rydberg Gate Fidelity
Photon recoil and laser focusing limits to Rydberg gate fidelity
论文作者
论文摘要
限制了由中性原子的内部状态纠缠而产生的rydberg门忠诚度,该状态由于光子吸收和重新排放而产生的动力踢而具有动作自由度。当原子处于内部状态的叠加中,但仅通过可见或紫外光子操纵这些状态时,就会发生这种情况。提出了描述这种情况的Schrödinger方程,并探讨了两个案例。在第一种情况下,由于空间波函数在激发和刺激发射之间的时间分离而导致纠缠之处。对于谐波陷阱中的中性原子,当激光脉冲的持续时间短于谐波振荡器周期时,可以在突然的近似中表达变质。在此限制中,简单的分析公式给出了变质,该公式解释了光子的动量,原子温度,谐波振荡器频率和原子质量。在第二种情况下,由于引起吸收和刺激发射的光子在聚焦的光束模式下,门忠诚度降低了。这导致了质量原子位置中心状态的光学诱导的变化的依赖性。在脉冲之间的时间短的极限中,可以将破坏性表示为涉及激光腰部,原子温度,陷阱频率和原子质量的简单分析公式。研究了针对标准$π-2π$ rydberg门的栅极保真度的这些限制,并研究了基于高斯信封的单个绝热脉冲的新协议。
Limits to Rydberg gate fidelity that arise from the entanglement of internal states of neutral atoms with the motional degrees of freedom due to the momentum kick from photon absorption and re-emission is quantified. This occurs when the atom is in a superposition of internal states but only one of these states is manipulated by visible or UV photons. The Schrödinger equation that describes this situation is presented and two cases are explored. In the first case, the entanglement arises because the spatial wave function shifts due to the separation in time between excitation and stimulated emission. For neutral atoms in a harmonic trap, the decoherence can be expressed within a sudden approximation when the duration of the laser pulses are shorter than the harmonic oscillator period. In this limit, the decoherence is given by simple analytic formulas that account for the momentum of the photon, the temperature of the atoms, the harmonic oscillator frequency, and atomic mass. In the second case, there is a reduction in gate fidelity because the photons causing absorption and stimulated emission are in focused beam modes. This leads to a dependence of the optically induced changes in the internal states on the center of mass atomic position. In the limit where the time between pulses is short, the decoherence can be expressed as a simple analytic formula involving the laser waist, temperature of the atoms, the trap frequency and the atomic mass. These limits on gate fidelity are studied for the standard $π-2π-π$ Rydberg gate and a new protocol based on a single adiabatic pulse with Gaussian envelope.