Information retrieval from passive backscatter systems is widely used in digital applications with tight energy budgets, short communication distances, and low data rates. Due to the fundamental limits of classical wireless receivers, the achievable data rate cannot be increased without compromising either energy efficiency or communication range, thereby hindering the broader adoption of this technology. In this work, we present a novel time-resolving quantum receiver combined with a multi-mode probing signal to extract large-alphabet information modulated by a passive reconfigurable intelligent surface (RIS). The adaptive nature of the proposed receiver yields significant quantum advantages over classical receivers without relying on complex or fragile quantum resources such as entanglement. Simulation results show that the proposed technique surpasses the classical standard quantum limit (SQL) for modulation sizes up to M = 2^8, meanwhile halving the probing energy or increasing the communication distance by a factor of 1.41.
翻译:被动式反向散射系统的信息检索技术广泛应用于数字应用中,这些应用具有严格的能量预算、较短的通信距离和较低的数据速率。由于经典无线接收机存在基本限制,在不牺牲能量效率或通信距离的前提下无法提升可达到的数据速率,从而阻碍了该技术的广泛应用。本研究提出了一种新型的时间分辨量子接收机,结合多模探测信号,用于提取由被动式可重构智能表面调制的大字母表信息。所提接收机的自适应特性使其相较于经典接收机展现出显著的量子优势,且无需依赖复杂或脆弱的量子资源(如纠缠)。仿真结果表明,该技术在调制尺寸高达M = 2^8时超越了经典的标准量子极限,同时将探测能量减半或将通信距离提升1.41倍。