NTT Basic Research Laboratories, NTT Corporation, Atsugi, Kanagawa, Japan.
Sci Rep. 2012;2:817. doi: 10.1038/srep00817. Epub 2012 Nov 12.
Integrated photonic circuits are one of the most promising platforms for large-scale photonic quantum information systems due to their small physical size and stable interferometers with near-perfect lateral-mode overlaps. Since many quantum information protocols are based on qubits defined by the polarization of photons, we must develop integrated building blocks to generate, manipulate, and measure the polarization-encoded quantum state on a chip. The generation unit is particularly important. Here we show the first integrated polarization-entangled photon pair source on a chip. We have implemented the source as a simple and stable silicon-on-insulator photonic circuit that generates an entangled state with 91 ± 2% fidelity. The source is equipped with versatile interfaces for silica-on-silicon or other types of waveguide platforms that accommodate the polarization manipulation and projection devices as well as pump light sources. Therefore, we are ready for the full-scale implementation of photonic quantum information systems on a chip.
集成光子电路是大规模光子量子信息系统最有前途的平台之一,因为它们具有小的物理尺寸和稳定的干涉仪,具有近乎完美的横向模式重叠。由于许多量子信息协议都是基于由光子的偏振定义的量子位,因此我们必须开发集成构建模块,以便在芯片上生成、操纵和测量偏振编码的量子态。生成单元尤为重要。在这里,我们展示了第一个在芯片上集成的偏振纠缠光子对源。我们已经实现了源作为一个简单而稳定的绝缘体上硅光子电路,它以 91 ± 2%的保真度生成纠缠态。该源配备了用于二氧化硅或其他类型波导平台的多功能接口,可容纳偏振操纵和投影设备以及泵浦光源。因此,我们已经准备好全面在芯片上实现光子量子信息系统。