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A quantum-bit encoding converter

delete2022-12-22
delete11
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OA
AI
T
Tom Darras
B
Beate E. Asenbeck
G
Giovanni Guccione
A
Adrien Cavaillès
H
Hanna Le Jeannic
J
Julien Laurat *
DOI:10.1038/s41566-022-01117-5delete
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Abstract

Abstract

En 中文
From telecommunications to computing architectures, the realm of classical information hinges on converter technology to enable the exchange of data between digital and analogue formats, a process now routinely performed across a variety of electronic devices. A similar exigency also exists 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.
Keywords:
HYBRID ENTANGLEMENT
STATE
INFORMATION

Journal

Nature Photonics cover
Nature Photonics
IF:
32.9
Papers:
4.3K
Citations:
6.1W

Organization

U
Universite PSL
Scholars:
3.3W
Papers: 2.5W
Citations: 91