Kroh Tim, Wolters Janik, Ahlrichs Andreas, Schell Andreas W, Thoma Alexander, Reitzenstein Stephan, Wildmann Johannes S, Zallo Eugenio, Trotta Rinaldo, Rastelli Armando, Schmidt Oliver G, Benson Oliver
Department of Physics, Humboldt-Universität zu Berlin, 12489, Berlin, Germany.
Department of Physics, University of Basel, 4056, Basel, Switzerland.
Sci Rep. 2019 Sep 24;9(1):13728. doi: 10.1038/s41598-019-50062-x.
Hybrid interfaces between distinct quantum systems play a major role in the implementation of quantum networks. Quantum states have to be stored in memories to synchronize the photon arrival times for entanglement swapping by projective measurements in quantum repeaters or for entanglement purification. Here, we analyze the distortion of a single-photon wave packet propagating through a dispersive and absorptive medium with high spectral resolution. Single photons are generated from a single In(Ga)As quantum dot with its excitonic transition precisely set relative to the Cesium D transition. The delay of spectral components of the single-photon wave packet with almost Fourier-limited width is investigated in detail with a 200 MHz narrow-band monolithic Fabry-Pérot resonator. Reflecting the excited state hyperfine structure of Cesium, "slow light" and "fast light" behavior is observed. As a step towards room-temperature alkali vapor memories, quantum dot photons are delayed for 5 ns by strong dispersion between the two 1.17 GHz hyperfine-split excited state transitions. Based on optical pumping on the hyperfine-split ground states, we propose a simple, all-optically controllable delay for synchronization of heralded narrow-band photons in a quantum network.
不同量子系统之间的混合接口在量子网络的实现中起着重要作用。量子态必须存储在存储器中,以便通过量子中继器中的投影测量来同步光子到达时间,从而实现纠缠交换或纠缠纯化。在此,我们以高光谱分辨率分析了单光子波包在色散和吸收介质中传播时的畸变。单光子由单个铟(镓)砷量子点产生,其激子跃迁相对于铯D跃迁精确设定。利用一个200 MHz的窄带单片法布里 - 珀罗谐振器详细研究了具有几乎傅里叶极限宽度的单光子波包光谱分量的延迟。反映铯的激发态超精细结构,观察到了“慢光”和“快光”行为。作为迈向室温碱金属蒸汽存储器的一步,量子点光子在两个1.17 GHz超精细分裂激发态跃迁之间因强色散而延迟了5 ns。基于对超精细分裂基态的光泵浦,我们提出了一种简单的、全光可控的延迟方法,用于量子网络中预示窄带光子的同步。