Hamer Anica, Fricker David, Hohn Marcel, Atkinson Paola, Lepsa Mihail, Linden Stefan, Vewinger Frank, Kardynal Beata, Stellmer Simon
Opt Lett. 2022 Apr 1;47(7):1778-1781. doi: 10.1364/OL.451975.
Wavelength conversion at the single-photon level is required to forge a quantum network from distinct quantum devices. Such devices include solid-state emitters of single or entangled photons, as well as network nodes based on atoms or ions. Here we demonstrate the conversion of single photons emitted from a III-V semiconductor quantum dot at 853 nm via sum frequency conversion to the wavelength of the strong transition of Yb ions at 370 nm. We measure the second-order correlation function of both the unconverted and the converted photon and show that the single-photon character of the quantum dot emission is preserved during the conversion process.
要从不同的量子设备构建量子网络,需要在单光子水平上进行波长转换。此类设备包括单光子或纠缠光子的固态发射器,以及基于原子或离子的网络节点。在此,我们展示了通过和频转换将III-V族半导体量子点发射的853纳米单光子转换为镱离子370纳米强跃迁波长的过程。我们测量了未转换光子和转换后光子的二阶关联函数,结果表明量子点发射的单光子特性在转换过程中得以保留。