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Enhanced detection of quantum correlations via extracted work for quantum illumination and secure communications

2025/03/11 by Gündogan, Mustafa, Taşgın, Mehmet Emre
#FOS: Physical sciences #Quantum Physics (quant-ph)

paper · doi:10.48550/arxiv.2503.08248

Abstract

We study the measurement of two-mode quantum correlations in the context of quantum key distribution (QKD) and quantum illumination (QI) through the detection of extracted work. We first observe that the extracted work, in units of kB T, is identical for a two-mode squeezed thermal state (TMSTS) and a two-mode squeezed vacuum state (TMSVS). However, TMSTS exhibits n\rm th times greater resistance to channel noise compared to TMSVS. We demonstrate that using TMSTS enhances the extracted work, joint-detection signal-to-noise ratio in QI, and correlation coefficients for QKD by approximately n\rm th times relative to initializing the idler-signal system with a TMSVS. These findings highlight the potential of TMSTS for improving correlation detection in quantum protocols, with significant implications for noise resilience in QI and QKD.

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