论文标题

量子位编码转换器

A quantum-bit encoding converter

论文作者

Darras, T., Asenbeck, B. E., Guccione, G., Cavaillès, A., Jeannic, H. Le, Laurat, J.

论文摘要

从电信到计算体系结构,经典信息的领域取决于转换器技术,以使数字和模拟格式之间的数据交换,这一过程现在通常在各种电子设备上执行。在量子信息技术中也存在类似的紧急情况,其中正在开发用于量子计算,通信和感应的不同框架。因此,有效的量子互连是将这些并行方法汇集在一起​​并扩展量子信息系统的主要需求。但是,到目前为止,由于难以保留脆弱的量子叠加和对无选择后实现的要求,不同光学量子位编码之间的转换仍然具有挑战性。在这里,我们证明了两个主要范式之间的量子信息转换,即离散和连续变量量子。我们在完整的单光子量子台上认证协议,成功地将其转换为超过经典限制的猫态量子。我们的结果展示了一个必不可少的工具,用于启用具有增强的多功能性和可扩展性的互连量子设备和体系结构。

From telecommunication to computing architectures, the realm of classical information hinges on converter technology to enable the exchange of data between digital and analog formats, a process now routinely performed across a variety of electronic devices. A similar exigency exists as well in quantum information technology where different frameworks are being developed for quantum computing, communication, and sensing. Thus, efficient quantum interconnects are a major need to bring these parallel approaches together and scale up quantum information systems. So far, however, the conversion between different optical quantum-bit encodings has remained challenging due to the difficulty of preserving fragile quantum superpositions and the demanding requirements for postselection-free implementations. Here we demonstrate such a conversion of quantum information between the two main paradigms, namely discrete- and continuous-variable qubits. We certify the protocol on a complete set of single-photon qubits, successfully converting them to cat-state qubits with fidelities exceeding the classical limit. Our result demonstrates an essential tool for enabling interconnected quantum devices and architectures with enhanced versatility and scalability.

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