Overcoming noise in quantum teleportation with multipartite hybrid entanglement
Liu Zhao-Di; Siltanen Olli; Kuusela Tom; Miao Rui-Heng; Ning Chen-Xi; Li Chuan-Feng; Guo Guang-Can; Piilo Jyrki
Overcoming noise in quantum teleportation with multipartite hybrid entanglement
Liu Zhao-Di
Siltanen Olli
Kuusela Tom
Miao Rui-Heng
Ning Chen-Xi
Li Chuan-Feng
Guo Guang-Can
Piilo Jyrki
American Association for the Advancement of Science Maa
Julkaisun pysyvä osoite on:
https://urn.fi/URN:NBN:fi-fe2025082790890
https://urn.fi/URN:NBN:fi-fe2025082790890
Tiivistelmä
Quantum entanglement and decoherence are the two counterforces of many quantum technologies and protocols. For example, while quantum teleportation is fueled by a pair of maximally entangled resource qubits, it is vulnerable to decoherence. Here, we propose an efficient quantum teleportation protocol in the presence of pure decoherence and without entangled resource qubits entering the Bell-state measurement. Instead, we use multipartite hybrid entanglement between the auxiliary qubits and their local environments within the open-quantum system context. With a hybrid-entangled initial state, it is the decoherence that allows us to achieve high fidelities. We demonstrate our protocol in an all-optical experiment.
Kokoelmat
- Rinnakkaistallenteet [27095]