论文标题
集成在单二氧化硅芯片上的128个相同的量子源
128 Identical Quantum Sources Integrated on a Single Silica Chip
论文作者
论文摘要
由于量子叠加认可的固有的并行处理能力,量子技术正在发挥越来越重要的作用,超过了各种领域的经典性能的上限。集成的光子芯片提供了一种优雅的方式,可以以物理可扩展的方式构建大型量子系统,但是,量子源的不均匀性阻止了所有元素连贯连接,以指数增加希尔伯特的空间。在这里,我们在实验上证明了在单二氧化硅芯片上集成的128个相同的量子源。通过积极控制飞秒激光直接写入中的光 - 互动,我们能够全面地统一波导的性能,因此可以为量子源而自发的四波混合过程。我们通过一系列预示的两种源hong-ou-mandel干扰来验证芯片源的不可区分性,所有浸入可见性都超过90%。此外,发现源的亮度很容易到达MHz,并且适用于离散可变和连续变量的平台,显示清晰的防堆功能或在不同的泵送方案下显示大型挤压参数。量子源的可伸缩性和均匀性以及集成的光子网络和检测将为真实应用提供大规模的全芯片量子处理器。
Quantum technology is playing an increasingly important role due to the intrinsic parallel processing capabilities endorsed by quantum superposition, exceeding upper limits of classical performances in diverse fields. Integrated photonic chip offers an elegant way to construct large-scale quantum systems in a physically scalable fashion, however, nonuniformity of quantum sources prevents all the elements from being connected coherently for exponentially increasing Hilbert space. Here, we experimentally demonstrate 128 identical quantum sources integrated on a single silica chip. By actively controlling the light-matter interaction in femtosecond laser direct writing, we are able to unify the properties of waveguides comprehensively and therefore the spontaneous four-wave mixing process for quantum sources. We verify the indistinguishability of the on-chip sources by a series of heralded two-source Hong-Ou-Mandel interference, with all the dip visibilities above 90%. In addition, the brightness of the sources is found easily reaching MHz and being applicable to both discrete-variable and continuous-variable platform, showing either clear anti-bunching feature or large squeezing parameter under different pumping regimes. The demonstrated scalability and uniformity of quantum sources, together with integrated photonic network and detection, will enable large-scale all-on-chip quantum processors for real-life applications.