发表机构
Southern Methodist University(南方卫理公会大学)
机构由 AI 辅助整理,请以论文原文为准。AI 中文总结
本文综述量子传感在消费电子中的近期应用,分析四种平台,指出其优势在于升级混合系统中的测量组件,机会集中于弱场检测、紧凑射频接收和抗噪传感。
AI 中文摘要
量子传感正成为提升消费电子传感能力的实用手段,尤其在尺寸、功耗和噪声限制经典方法的场景中。本文采用平台与应用框架,回顾了量子传感的近期适用性。在此框架内,我们概述了通用传感协议,并讨论了与消费电子相关的四种关键量子传感平台的工作原理:氮空位(NV)中心、原子蒸气电池、里德伯原子传感器和光子量子传感器。通过涉及导航与定位、医疗保健与可穿戴设备、射频(RF)与无线系统、物联网(IoT)及成像的案例研究,我们考察了量子传感带来的切实工程优势。量子传感并非完全取代现有设备,更可能在近期通过升级混合经典-量子系统中的特定测量组件来赢得一席之地。目前,最清晰的机会在于弱场检测、紧凑型射频接收以及噪声环境下保持稳健的传感。
英文摘要
Quantum sensing is emerging as a practical means of improving sensing capabilities in consumer electronics, particularly where size, power, and noise constrain classical approaches. In this paper, we reviewed the near-term applicability of quantum sensing using a platform-and-application framework. Within this framework, we outlined the general sensing protocol and discussed the working of the four key quantum sensing platforms relevant to consumer electronics: nitrogen-vacancy (NV) centers, atomic vapor cells, Rydberg atomic sensors, and photonic quantum sensors. Through case studies involving navigation and positioning, healthcare and wearables, radio-frequency (RF) and wireless systems, the Internet of Things (IoT), and imaging, we examined the tangible engineering advantages offered by quantum sensing. Rather than replacing devices outright, quantum sensing is more likely to earn its place in the near-term by upgrading specific measurement components within hybrid classical-quantum systems. Right now, the clearest opportunities are in weak-field detection, compact RF reception, and sensing that remains robust in noise.
CommentsPublished in IEEE Consumer Electronics Magazine, doi: 10.1109/MCE.2026.3737069
Journal refS. Bhowmik and H. Thapliyal, "Quantum Sensing Applications in Consumer Electronics: Emerging Methods and Near-Term Use Cases," in IEEE Consumer Electronics Magazine, doi: 10.1109/MCE.2026.3737069