Randomness Certification from Multipartite Quantum Steering for Arbitrary Dimensional Systems

Fuente: arXiv
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Main Authors: Li, Yi, Xiang, Yu, Yu, Xiao-Dong, Nguyen, H. Chau, Gühne, Otfried, He, Qiongyi
Format: Preprint
Published: 2023
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_version_ 1866914688476905472
author Li, Yi
Xiang, Yu
Yu, Xiao-Dong
Nguyen, H. Chau
Gühne, Otfried
He, Qiongyi
author_facet Li, Yi
Xiang, Yu
Yu, Xiao-Dong
Nguyen, H. Chau
Gühne, Otfried
He, Qiongyi
contents Entanglement in bipartite systems has been applied for the generation of secure random numbers, which are playing an important role in cryptography or scientific numerical simulations. Here, we propose to use multipartite entanglement distributed between trusted and untrusted parties for generating randomness of arbitrary dimensional systems. We show that the distributed structure of several parties leads to additional protection against possible attacks by an eavesdropper, resulting in more secure randomness generated than in the corresponding bipartite scenario. Especially, randomness can be certified in the group of untrusted parties, even there is no randomness exists in either of them individually. We prove that the necessary and sufficient resource for quantum randomness in this scenario is multipartite quantum steering when two measurement settings are performed on the untrusted parties. However, the sufficiency no longer holds with more measurement settings. Finally, we apply our analysis to some experimentally realized states and show that more randomness can be extracted in comparison to the existing analysis.
format Preprint
id arxiv_https___arxiv_org_abs_2307_02061
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Randomness Certification from Multipartite Quantum Steering for Arbitrary Dimensional Systems
Li, Yi
Xiang, Yu
Yu, Xiao-Dong
Nguyen, H. Chau
Gühne, Otfried
He, Qiongyi
Quantum Physics
Entanglement in bipartite systems has been applied for the generation of secure random numbers, which are playing an important role in cryptography or scientific numerical simulations. Here, we propose to use multipartite entanglement distributed between trusted and untrusted parties for generating randomness of arbitrary dimensional systems. We show that the distributed structure of several parties leads to additional protection against possible attacks by an eavesdropper, resulting in more secure randomness generated than in the corresponding bipartite scenario. Especially, randomness can be certified in the group of untrusted parties, even there is no randomness exists in either of them individually. We prove that the necessary and sufficient resource for quantum randomness in this scenario is multipartite quantum steering when two measurement settings are performed on the untrusted parties. However, the sufficiency no longer holds with more measurement settings. Finally, we apply our analysis to some experimentally realized states and show that more randomness can be extracted in comparison to the existing analysis.
title Randomness Certification from Multipartite Quantum Steering for Arbitrary Dimensional Systems
topic Quantum Physics
url https://arxiv.org/abs/2307.02061