用于公开验证量子随机数以及生成公钥和私钥的四量子比特光子系统

IF 2.9 2区 物理与天体物理 Q2 Physics and Astronomy
Mayalakshmi Kolangatt, Anirudh Verma, Sujai Matta, Kanad Sengupta, C. M. Chandrashekar
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引用次数: 0

摘要

我们从理论上提出并在实验中演示了使用可配置的四量子比特光子系统来生成可公开验证的量子随机数、执行纠缠验证以及生成安全的公钥和私钥。量子电路利用偏振和路径自由度纠缠的光子对生成所需的四量子比特状态,并在光子架构中进行实验实现。通过对四量子比特系统进行测量并获取四量子比特态的部分信息进行公开验证,我们从 370 kbps 的集体数据中以 185 kbps 的速率生成了经过公开验证的纯安全随机比特。当系统用于生成公钥和私钥时,会同时生成相同数量的公钥和私钥。我们还记录了约 97.9% 通过纠缠验证的四量子比特态采样比特,并演示了将生成的公钥和私钥用于图像加密-解密。四量子比特态噪声的理论模型及其对验证比特和安全比特生成率的影响与实验结果完全一致。这证明了小规模多量子比特光子系统在量子安全应用中的实际应用,为实时验证量子系统的安全特性提供了选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Four-qubit photonic system for publicly verifiable quantum random numbers and generation of public and private key

Four-qubit photonic system for publicly verifiable quantum random numbers and generation of public and private key
We theoretically propose and experimentally demonstrate the use of a configurable four-qubit photonic system to generate publicly verifiable quantum random numbers, to perform entanglement verification, and to generate a secure public and private key. Quantum circuits, to generate the desired four-qubit states and its experimental realization in the photonic architecture, are carried out using photon pairs entangled in polarization and path degrees of freedom. By performing measurements on the four-qubit system and accessing partial information of the four-qubit state for public verification, we generate publicly verified and purely secured random bits at the rate of 185 kbps from collective data of 370 kbps. When the system is used for generating public and private keys, an equal number of public and private keys are generated simultaneously. We also record about 97.9% of sampled bits from four-qubit states passing entanglement verification and demonstrate the use of public and private key generated for image encryption-decryption. The theoretical model of noise on the four-qubit state and its effect on the generation rate of verified and secured bits are in perfect agreement with the experimental results. This demonstrates the practical use of the small-scale multiqubit photonic system for quantum-safe applications by providing the option for real-time verification of the security feature of the quantum system.
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来源期刊
Physical Review A
Physical Review A 物理-光学
CiteScore
5.40
自引率
24.10%
发文量
0
审稿时长
2.2 months
期刊介绍: Physical Review A (PRA) publishes important developments in the rapidly evolving areas of atomic, molecular, and optical (AMO) physics, quantum information, and related fundamental concepts. PRA covers atomic, molecular, and optical physics, foundations of quantum mechanics, and quantum information, including: -Fundamental concepts -Quantum information -Atomic and molecular structure and dynamics; high-precision measurement -Atomic and molecular collisions and interactions -Atomic and molecular processes in external fields, including interactions with strong fields and short pulses -Matter waves and collective properties of cold atoms and molecules -Quantum optics, physics of lasers, nonlinear optics, and classical optics
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