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On-chip coherent conversion of photonic quantum entanglement between different degrees of freedom

机译:不同自由度之间光子量子纠缠的片上相干转换

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In the quantum world, a single particle can have various degrees of freedom to encode quantum information. Controlling multiple degrees of freedom simultaneously is necessary to describe a particle fully and, therefore, to use it more efficiently. Here we introduce the transverse waveguide-mode degree of freedom to quantum photonic integrated circuits, and demonstrate the coherent conversion of a photonic quantum state between path, polarization and transverse waveguide-mode degrees of freedom on a single chip. The preservation of quantum coherence in these conversion processes is proven by single-photon and two-photon quantum interference using a fibre beam splitter or on-chip beam splitters. These results provide us with the ability to control and convert multiple degrees of freedom of photons for quantum photonic integrated circuit-based quantum information process.
机译:在量子世界中,单个粒子可以具有各种自由度来编码量子信息。为了完全描述一个粒子,因此要同时更有效地使用它,必须同时控制多个自由度。在这里,我们将横向波导模式的自由度引入量子光子集成电路,并在单个芯片上演示光子量子态在路径,偏振和横向波导模式的自由度之间的相干转换。在这些转换过程中,通过使用光纤分束器或芯片上分束器的单光子和双光子量子干扰证明了量子相干性的保持。这些结果为我们提供了控制和转换光子多个自由度的能力,以用于基于量子光子集成电路的量子信息处理。

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