论文标题
通过确定位置量子点在纳米antennas中的确定性放置,具有接近统一收集效率的单个光子源
Single Photon Sources with Near Unity Collection Efficiencies by Deterministic Placement of Quantum Dots in Nanoantennas
论文作者
论文摘要
量子网络中光子节点之间的确定性耦合是实施各种量子技术的重要步骤。但是,独立发射器的全向性使此耦合效率很低,特别是如果通过低数值孔径(NA)通道(例如光纤纤维)耦合遥远的节点。该限制需要将量子发射器放在纳米antennas中,这些发射器可以以非常高的效率将光子引导到通道中。此外,为了能够将这些技术扩展到大量渠道,发射器的放置应该是确定性的。在这项工作中,我们提出了一种方法,可以在高方向性的靶向金属二极管纳米antennas的中心直接定位具有高空间精度的单个独立量子发射器。我们进一步采用了非闪烁的高量子产量胶体量子点(QD),以进行按需单光子发射,而不稳定性或非辐射激子重组过程对此表示不妥协。综上所述,这种方法导致创纪录的收集效率为85%的单个光子的Na为0.5,为片上,室温纳米温度纳米ante-Emitter设备和光纤或远程自由空间节点之间的有效耦合奠定了基础。
Deterministic coupling between photonic nodes in a quantum network is an essential step towards implementing various quantum technologies. The omnidirectionality of free-standing emitters, however, makes this coupling highly inefficient, in particular if the distant nodes are coupled via low numerical aperture (NA) channels such as optical fibers. This limitation requires placing quantum emitters in nanoantennas that can direct the photons into the channels with very high efficiency. Moreover, to be able to scale such technologies to a large number of channels, the placing of the emitters should be deterministic. In this work we present a method for directly locating single free-standing quantum emitters with high spatial accuracy at the center of highly directional bullseye metal-dielectric nanoantennas. We further employ non-blinking, high quantum yield colloidal quantum dots (QDs) for on-demand single-photon emission that is uncompromised by instabilities or non-radiative exciton recombination processes. Taken together this approach results in a record-high collection efficiency of 85% of the single photons into a low NA of 0.5, setting the stage for efficient coupling between on-chip, room temperature nanoantenna-emitter devices and a fiber or a remote free-space node without the need for additional optics.