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3He极化系统中FID NMR线圈的优化分析及实验验证

罗庆金 吴良勇 王雨婷 闫海洋 向一峰 陈思宇

波谱学杂志2024,Vol.41Issue(3):266-275,10.
波谱学杂志2024,Vol.41Issue(3):266-275,10.DOI:10.11938/cjmr20243099

3He极化系统中FID NMR线圈的优化分析及实验验证

Optimization Analysis and Experimental Verification of FID NMR Coil in Polarized 3He Systems

罗庆金 1吴良勇 1王雨婷 1闫海洋 1向一峰 1陈思宇1

作者信息

  • 1. 中子物理重点实验室,核物理与化学研究所,中国工程物理研究院,四川绵阳 621900
  • 折叠

摘要

Abstract

The application of hyperpolarized 3He gas is extensive in fields such as neutron polarimetry,fundamental physics,and diagnostic medicine.The polarimetry measurement is crucial for 3He polarization systems.Typically,a free induction decay nuclear magnetic resonance(FID NMR)coil is used to detect the FID signal of 3He atoms.The measurement signal-to-noise ratio(SNR)of the coil is correlated with factors such as diameter,number of turns,and relative position to the cell.There is limited literature and insufficient experimental verification on the optimization analysis of FID NMR coils.In this study,an SNR model for the coil was established through theoretical analysis of the FID signal and coil noise.The FID NMR coil was experimentally validated in a 3He polarization system based on the metastability-exchange optical pumping(MEOP)technique,which is known for its high polarization efficiency.The experimental results indicated that for a cylindrical cell with both radius and height of rcell,the optimal SNR of the coil was achieved at a radius of rcell/2,which was consistent with the theoretical analysis.The relative error of the fitted SNR model was less than 10%,demonstrating its effectiveness.These research findings hold significant practical implications for optimizing the design of 3He polarization systems.

关键词

自由感应衰减线圈设计/极化率测量/极化3He/亚稳态交换光泵

Key words

FID coil design/polarimetry measurement/polarized 3He/MEOP

分类

数理科学

引用本文复制引用

罗庆金,吴良勇,王雨婷,闫海洋,向一峰,陈思宇..3He极化系统中FID NMR线圈的优化分析及实验验证[J].波谱学杂志,2024,41(3):266-275,10.

基金项目

国家自然科学基金资助项目(U2230207,U2030209,12305114) (U2230207,U2030209,12305114)

国家重点研发计划项目(2020YFA0406001,2020YFA0406001). (2020YFA0406001,2020YFA0406001)

波谱学杂志

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