首页|期刊导航|物理学进展|固态色心量子传感研究进展

固态色心量子传感研究进展OA

Research progress on solid-state color center quantum sensing

中文摘要英文摘要

量子传感作为量子信息技术的核心分支,借助量子叠加、量子纠缠等量子效应突破经典物理极限,成功实现物理量的超高精度测量.相较于传统量子传感材料,固态色心材料因嵌入刚性晶格,具备在室温大气环境下稳定保持量子相干性、良好生物相容性、优异环境耐受性以及长自旋态相干时间等核心优势,为量子传感产业化落地提供了优质材料支撑.本文首先介绍了量子精密测量和传感技术的发展趋势,阐述了量子传感的重要性;接着聚焦金刚石氮—空位色心、第 IV 主族色心以及六方氮化硼色心等典型固态色心量子传感体系,系统介绍了其结构与应用;最后拓展至其他固态量子传感材料,并对固态色心量子传感的发展前景及面临的挑战进行了展望.

Quantum sensing,as a core branch of quantum information technology,uti-lizes quantum effects such as quantum superposition and quantum entanglement to break through the limits of classical physics and achieve ultra-high precision measurement of phys-ical quantities.Compared to traditional quantum sensing materials,solid-state color center materials have core advantages such as being embedded in a rigid lattice,being able to stably maintain quantum coherence at room temperature in an atmosphere,being biocompatible and environmentally tolerant,and having a long coherence time for spin states.These characteris-tics provide high-quality material support for the industrialization of quantum sensing.This article first introduces the development trends of quantum precision measurement and sensing technology,and elaborates on the importance of quantum sensing.Then,it focuses on review-ing typical solid-state color center quantum sensing types such as diamond nitrogen-vacancy color centers,group-IV color centers,and hexagonal boron nitride color centers,systematically introducing their structures and applications.Finally,it briefly surveys other quantum sensing materials and discusses the development prospects and challenges of solid-state color center quantum sensing.

冯子涵;汪帅岩;林春丹;杨振清

中国石油大学(北京)理学院,北京 102249中国石油大学(北京)理学院,北京 102249中国石油大学(北京)理学院,北京 102249中国石油大学(北京)理学院,北京 102249

信息技术与安全科学

固态色心量子传感量子精密测量金刚石氮—空位色心:六方氮化硼色心

solid-state color centersquantum sensingquantum precision measurementdiamond nitrogen-vacancy centershexagonal boron nitride color centers

《物理学进展》 2026 (4)

202-215,14

10.13725/j.cnki.pip.2026.04.003

评论