Physics Department, Royal Holloway, University of London, Egham, Surrey TW20 0EX, UK.
Center for Emergent Matter Science, RIKEN, Wako, Saitama 351-0198, Japan.
Nat Commun. 2016 Aug 22;7:12588. doi: 10.1038/ncomms12588.
An on-demand single-photon source is a key element in a series of prospective quantum technologies and applications. Here we demonstrate the operation of a tuneable on-demand microwave photon source based on a fully controllable superconducting artificial atom strongly coupled to an open-ended transmission line. The atom emits a photon upon excitation by a short microwave π-pulse applied through a control line. The intrinsically limited device efficiency is estimated to be in the range 65-80% in a wide frequency range from 7.75 to 10.5 GHz continuously tuned by an external magnetic field. The actual demonstrated efficiency is also affected by the excited state preparation, which is about 90% in our experiments. The single-photon generation from the single-photon source is additionally confirmed by anti-bunching in the second-order correlation function. The source may have important applications in quantum communication, quantum information processing and sensing.
按需单光子源是一系列有前景的量子技术和应用的关键元件。在这里,我们展示了基于完全可控超导人工原子与开放式传输线强耦合的可调谐按需微波光子源的工作原理。原子在通过控制线施加的短微波 π 脉冲激发下会发射光子。通过外部磁场连续调谐,在从 7.75 到 10.5GHz 的宽频率范围内,设备效率固有地限制在 65-80%。在我们的实验中,实际演示的效率也受到激发态制备的影响,大约为 90%。通过二阶相关函数中的反聚束,进一步证实了单光子源的单光子产生。该光源在量子通信、量子信息处理和传感等方面可能具有重要应用。