量子纠缠
量子技术
量子
量子传感器
量子退相干
稳健性(进化)
物理
计算机科学
量子网络
量子密钥分配
量子计算机
钥匙(锁)
纳米量子科学
量子力学
拓扑(电路)
量子信息
统计物理学
量子计量学
混合动力系统
电子工程
量子热力学
开放量子系统
量子信息科学
量子不和谐
量子动力学
能量(信号处理)
量子态
作者
Mrittunjoy Guha Majumdar
出处
期刊:
日期:2026-03-19
卷期号:2 (1)
被引量:1
标识
DOI:10.1007/s44464-026-00012-0
摘要
Quantum hyperentanglement and hybrid entanglement are advanced quantum resources with significant potential for technological innovation. This review investigates the proposed role of these entanglement structures in the optimization of two critical quantum technologies: quantum batteries and quantum sensors. We synthesize existing literature to analyze how hyperentangled states could enhance energy storage systems by increasing ergotropy density, accelerating charging rates, and enabling parallelized energy transfer. Furthermore, we examine how hyperentangled and hybrid-entangled architectures may improve the sensitivity, dynamic range, and robustness of quantum sensors through multi-parameter estimation and decoherence suppression. By contextualizing these advancements within quantum thermodynamics and metrology, we identify key theoretical advantages, discuss the significant experimental challenges that must be overcome for their realization, and propose a roadmap for future research. Our findings suggest that high-dimensional entanglement engineering could serve as a foundational principle for designing next-generation quantum devices aimed at addressing global sustainability challenges.
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