论文标题
表面量子点具有纯,相干和无闪烁的单光子发射
Surface quantum dots with pure, coherent, and blinking-free single photon emission
论文作者
论文摘要
半导体纳米结构的表面对其电子和光学特性具有重大影响。表面层中的疾病和缺陷通常会导致电荷载体传输和辐射重组动力学的降解。但是,对于许多可扩展的纳米光学应用,表面附近是不可避免的。外司及生长的量子点是高性能单光子发射的最佳候选者,并且在量子技术中显示出很大的潜力。然而,这些发射器只有将它们深深地嵌入半导体宿主中时才能揭示其出色的特性。直到今天,接近表面的量子点会产生弱,宽和不稳定的排放。在这里,我们显示了直接在半导体表面生长的量子点的光学特性的完全恢复。硫磺钝化后,来自生长样品的消失发光变成明亮,超稳,连贯和无眨眼的单光子发射。在准谐振的激发下,单光子的纯度为98.8%,无法区分的77%,线宽下降至4 $μ$ eV,并在11个数量级上产生99.69%的持久性。即使经过两年后,并且在接受纳米制造过程后,排放量也是稳定的。从而去除了一些长期存在的表面主导量子点的绊脚石,为量子通信或传感中的混合纳米驱动器和应用提供了新的可能性。
The surface of semiconductor nanostructures has a major impact on their electronic and optical properties. Disorder and defects in the surface layer typically cause degradation of charge carrier transport and radiative recombination dynamics. However, surface vicinity is inevitable for many scalable nano-optical applications. Epitaxially grown quantum dots are the best candidate for high-performance single photon emission and show great potential for quantum technologies. Yet, these emitters only reveal their excellent properties if they are deeply embedded in a semiconductor host. Until today, quantum dots close to surfaces yield weak, broad, and unstable emissions. Here, we show the complete restoration of optical properties from quantum dots grown directly on a semiconductor surface. The vanishing luminescence from the as-grown sample turns into bright, ultra-stable, coherent and blinking-free single photon emission after sulphur passivation. Under quasi-resonant excitation, single photons are generated with 98.8% purity, 77% indistinguishability, linewidths down to 4 $μ$eV and 99.69% persistency across 11 orders of magnitude in time. The emission is stable even after two years and when being subjected to nanomanufacturing processes. Some long-standing stumbling blocks for surface-dominated quantum dots are thereby removed, unveiling new possibilities for hybrid nano-devices and applications in quantum communication or sensing.