宇航计测技术 ›› 2023, Vol. 43 ›› Issue (3): 56-60.doi: 10.12060/j.issn.1000-7202.2023.03.11

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基于金刚石氮-空位色心的温度测量技术

董先启,刘岩,杨仁福*   

  1. 北京量子信息科学研究院,北京 100193
  • 出版日期:2023-06-25 发布日期:2023-07-08
  • 通讯作者: 杨仁福(1976-),男,研究员、博士生导师,博士,主要研究方向:原子钟及量子精密测量技术。
  • 作者简介:董先启(1998-),男,博士在读,主要研究方向:NV色心的精密测量技术。

Thermometry based on Nitrogen-vacancy Centers in Diamonds

DONG Xian-qi, LIU Yan, YANG Ren-fu*   

  1. Beijing Academy of Quantum Information Sciences, Beijing 100193, China
  • Online:2023-06-25 Published:2023-07-08

摘要: 量子信息科学的高速发展推动了量子传感技术的研究,产生了很多重要成果,在精密测量领域产生了重要的影响。基于固态金刚石NV色心电子自旋探测的传感技术,可溯源至基本量子物理规律,在磁场、电场、温度、压力等传感领域的计量标准方面有重要的研究价值。金刚石NV色心优异的性质,使得严苛环境下可靠、稳定、高精度的传感应用成为可能。以其在温度测量领域上的应用为例,重点介绍最近十年来NV色心自旋探测原理和方法的发展,并结合最新的研究成果,论述固态量子温度计量的重要研究意义。

关键词: 量子精密测量, 氮空位色心, 金刚石, 温度计量

Abstract: In recent years, the rapid development of quantum information science has promoted the research of various quantum sensing technologies and produced many important results, which has had an important impact in the field of precision measurement. The sensing technology based on solid-state diamond NV color center electronic spin detection can be traced back to the basic quantum physical principles, and has important research value in the measurement standards of various sensing fields such as magnetic field, electric field, temperature, and pressure. The excellent properties of diamond NV color centers make reliable, stable and high-precision sensing applications possible in harsh environments. Taking its application in the field of temperature measurement as an example, this paper focuses on the development of NV color center spin detection principles and methods in the past ten years, and discusses the important research significance of solid-state quantum temperature measurement in combination with the latest research results.

Key words: Quantum precision measurement, Nitrogen vacancy color centers, Diamond, Thermometry

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