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Towards nondegenerate polarization entanglement from a waveguide down-conversion source

机译:朝向波导下转换源的非重量偏振纠缠

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As optical quantum information processing protocols and experiments become increasingly more complex, integrated optics provide a small and robust alternative to traditional bulk optics. Specifically, waveguide technology allows for the creation of bright single-photon sources based on the fact that photon pairs can be created at any location along the waveguide. For our goals, we are working on the characterization of a highly nondegenerate Spontaneous Parametric Down-Conversion (SPDC) waveguide source on a periodically poled KTP (PPKTP) crystal. Our current waveguide source uses type-Ⅱ phase-matching to create collinear signal and idler photons at 1550 nm and 810 nm, respectively, with the promise of generating simultaneous time-bin and polarization entanglement in future iterations. Our intended source application is for use in quantum key distribution and superdense teleportation protocols between a space platform and collection telescopes on Earth.
机译:随着光学量子信息处理协议和实验变得越来越复杂,集成光学器件为传统的散装光学系统提供了一种小而坚固的替代方案。具体地,波导技术允许基于可以在沿波导的任何位置产生光子对的事实来创建明亮的单光子源。为我们的目标,我们正在致力于在周期性极化的KTP(PPKTP)晶体上具有高度不良的自发性参数下转换(SPDC)波导源。我们目前的波导源使用Type-Ⅱ相位匹配,以分别在1550nm和810nm处创建共线信号和惰光子,并在将来的迭代中产生同时的时间箱和极化纠缠。我们的预期源应用程序用于在地球上的空间平台和集合望远镜之间的量子密钥分布和超义传送协议。

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