论文标题

在室温碱蒸气中准备狭窄的速度分布以进行量子记忆

Preparing Narrow Velocity Distributions for Quantum Memories in Room-Temperature Alkali Vapours

论文作者

Main, D., Hird, T. M., Gao, S., Oguz, E., Saunders, D. J., Walmsley, I. A., Ledingham, P. M.

论文摘要

量子记忆是一种至关重要的技术,用于通过同步概率操作来实现大规模量子网络。这样的网络对量子内存施加了严格的要求,例如存储时间,检索效率,带宽和可扩展性。温暖的原子蒸气平台上的宽阶梯和非谐波梯子方案是有希望的候选人,将有效的高带宽操作与低噪声的按需检索相结合。但是,它们的存储时间受到由蒸气组成的原子的宽速度分布引起的运动引起的脱缘的严重限制。在本文中,我们展示了速度选择性光泵,以克服这种脱碳机制。这将增加蒸气记忆的可实现的内存存储时间。该技术也可以用于制备任意形状的吸收曲线,例如准备原子频率梳吸收特征。

Quantum memories are a crucial technology for enabling large-scale quantum networks through synchronisation of probabilistic operations. Such networks impose strict requirements on quantum memory, such as storage time, retrieval efficiency, bandwidth, and scalability. On- and off-resonant ladder protocols on warm atomic vapour platforms are promising candidates, combining efficient high-bandwidth operation with low-noise on-demand retrieval. However, their storage time is severely limited by motion-induced dephasing caused by the broad velocity distribution of atoms comprising the vapour. In this paper, we demonstrate velocity selective optical pumping to overcome this decoherence mechanism. This will increase the achievable memory storage time of vapour memories. This technique can also be used for preparing arbitrarily shaped absorption profiles, for instance, preparing an atomic frequency comb absorption feature.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源