Please use this identifier to cite or link to this item: http://repositorio.ufc.br/handle/riufc/60058
Type: Artigo de Evento
Title: Estimating Sources for Weak-Coherent-State-Based Quantum Key Distribution
Authors: Silva, José Leonardo Esteves da
Vasconcelos, Hilma Helena Macedo de
Keywords: Quantum key distribution;Coherent states;Estimator
Issue Date: 2018
Publisher: https://www.sbrt.org.br/sbrt2018
Citation: SILVA, Jose Leonardo Esteves da; VASCONCELOS, Hilma Helena Macedo de. Estimating sources for weak-coherent-state-based quantum key distribution. . In: SIMPÓSIO BRASILEIRO DE TELECOMUNICAÇÕES E PROCESSAMENTO DE SINAIS – SbrT, XXXVI., 16 a 19 set. 2018. Campina Grande-PB. Anais[…], Campina Grande-PB, 2018. p.407-409.
Abstract in Brazilian Portuguese: Quantum key distribution allows two parties to generate a shared cryptographic key of bits such that an eavesdropper is not able to obtain significant information about the key without being detected. In protocols based on the transmission of coherent states, the error rate, the key rate generation, and the system security depend on the source states used. In here, we show that quantum homodyne tomography using discretization of the measurements into histogram bin can be used as an estimator to analyze the aforementioned source states without losing too much information.
Abstract: Quantum key distribution allows two parties to generate a shared cryptographic key of bits such that an eavesdropper is not able to obtain significant information about the key without being detected. In protocols based on the transmission of coherent states, the error rate, the key rate generation, and the system security depend on the source states used. In here, we show that quantum homodyne tomography using discretization of the measurements into histogram bin can be used as an estimator to analyze the aforementioned source states without losing too much information.
URI: http://www.repositorio.ufc.br/handle/riufc/60058
Appears in Collections:DETE - Trabalhos apresentados em eventos

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