论文标题

通过自适应泵调制的完整高维钟基相干生成

Coherent generation of the complete high-dimensional Bell basis by adaptive pump modulation

论文作者

Chen, Yuanyuan, Zhang, Wuhong, Zhang, Dongkai, Qiu, Xiaodong, Chen, Lixiang

论文摘要

钟基的基础是一组最大的纠结的双孔状态,是量子信息处理的关键先决条件,许多量子应用强调了操纵高维铃铛基础的要求。虽然可以使用巧妙的单光子量子门创建钟状状态,但其在较高维度中的实现复杂性显着增加。在这里,我们提出了一种详尽的方法,以表明自适应泵调制可以在任意维的希尔伯特空间中有效地制备铃铛基础。实验创建了一组完整的四维轨道角动量钟状状态,从而产生了高保真度以证明纠缠维度。我们的策略可以简单地概括,以准备更复杂的量子状态,甚至利用其他物理自由度。同样,它可以促进在各种量子协议中,尤其是需要量子密度编码的量子方案中使用高维纠缠。

The Bell basis, a set of maximally entangled biphoton state, is a critical prerequisite towards quantum information processing, and many quantum applications have highlighted the requirement for the manipulation of high-dimensional Bell basis. While the Bell states can be created by using ingenious single-photon quantum gates, its implementation complexity in higher dimensions is significantly increased. Here we present an elaborate approach to show that the adaptive pump modulation enable the efficient preparation of Bell basis in arbitrary-dimensional Hilbert space. A complete set of four-dimensional orbital angular momentum Bell states are experimentally created, yielding high fidelities for certifying the entanglement dimensionality. Our strategy can be simply generalized to prepare more complex forms of quantum states even exploiting other physical degrees of freedom. Also, it can facilitate the use of high-dimensional entanglement in a variety of quantum protocols, in particular those requiring quantum dense coding.

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