Thom Joseph, Wilpers Guido, Riis Erling, Sinclair Alastair G
National Physical Laboratory, Teddington, Middlesex, TW11 0LW, UK.
Opt Express. 2013 Aug 12;21(16):18712-23. doi: 10.1364/OE.21.018712.
We demonstrate a system for fast and agile digital control of laser phase, amplitude and frequency for applications in coherent atomic systems. The full versatility of a direct digital synthesis radiofrequency source is faithfully transferred to laser radiation via acousto-optic modulation. Optical beatnotes are used to measure phase steps up to 2π, which are accurately implemented with a resolution of ≤ 10 mrad. By linearizing the optical modulation process, amplitude-shaped pulses of durations ranging from 500 ns to 500 ms, in excellent agreement with the programmed functional form, are demonstrated. Pulse durations are limited only by the 30 ns rise time of the modulation process, and a measured extinction ratio of > 5 × 10(11) is achieved. The system presented here was developed specifically for controlling the quantum state of trapped ions with sequences of multiple laser pulses, including composite and bichromatic pulses. The demonstrated techniques are widely applicable to other atomic systems ranging across quantum information processing, frequency metrology, atom interferometry, and single-photon generation.
我们展示了一种用于在相干原子系统应用中对激光相位、幅度和频率进行快速灵活数字控制的系统。直接数字合成射频源的全部通用性通过声光调制忠实地转移到激光辐射上。光学拍频用于测量高达2π的相位步长,其以≤10毫弧度的分辨率精确实现。通过使光学调制过程线性化,展示了持续时间从500纳秒到500毫秒的幅度整形脉冲,与编程的函数形式高度吻合。脉冲持续时间仅受调制过程30纳秒上升时间的限制,并且实现了大于5×10(11)的测量消光比。这里介绍的系统是专门为用多个激光脉冲序列(包括复合脉冲和双色脉冲)控制捕获离子的量子态而开发的。所展示的技术广泛适用于其他原子系统,涵盖量子信息处理、频率计量、原子干涉测量和单光子产生等领域。