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超精细场主导区域中的动态核极化

Dynamic nuclear polarization in the hyperfine-field-dominant region.

作者信息

Lee Seong-Joo, Shim Jeong Hyun, Kim Kiwoong, Yu Kwon Kyu, Hwang Seong-min

机构信息

Center for Biosignals, Korea Research Institute of Standards and Science (KRISS), 267 Gajeong-ro, Yuseong-gu, Daejeon 305-340, Republic of Korea.

Center for Biosignals, Korea Research Institute of Standards and Science (KRISS), 267 Gajeong-ro, Yuseong-gu, Daejeon 305-340, Republic of Korea.

出版信息

J Magn Reson. 2015 Jun;255:114-21. doi: 10.1016/j.jmr.2015.04.004. Epub 2015 Apr 24.

Abstract

Dynamic nuclear polarization (DNP) allows measuring enhanced nuclear magnetic resonance (NMR) signals. Though the efficiency of DNP has been known to increase at low fields, the usefulness of DNP has not been throughly investigated yet. Here, using a superconducting quantum interference device-based NMR system, we performed a series of DNP experiments with a nitroxide radical and measured DNP spectra at several magnetic fields down to sub-microtesla. In the DNP spectra, the large overlap of two peaks having opposite signs results in net enhancement factors, which are significantly lower than theoretical expectations and nearly invariant with respect to magnetic fields below the Earth's field. The numerical analysis based on the radical's Hamiltonian provides qualitative explanations of such features. The net enhancement factor reached 325 at maximum experimentally, but our analysis reveals that the local enhancement factor at the center of the rf coil is 575, which is unaffected by detection schemes. We conclude that DNP in the hyperfine-field-dominant region yields sufficiently enhanced NMR signals at magnetic fields above 1 μT.

摘要

动态核极化(DNP)可用于测量增强的核磁共振(NMR)信号。尽管已知DNP的效率在低场下会提高,但DNP的实用性尚未得到充分研究。在此,我们使用基于超导量子干涉装置的NMR系统,用一种氮氧化物自由基进行了一系列DNP实验,并在低至亚微特斯拉的几个磁场下测量了DNP光谱。在DNP光谱中,两个具有相反符号的峰的大量重叠导致了净增强因子,该因子显著低于理论预期,并且在低于地磁场的磁场下几乎与磁场无关。基于自由基哈密顿量的数值分析为这些特征提供了定性解释。实验中净增强因子最大达到325,但我们的分析表明,射频线圈中心的局部增强因子为575,这不受检测方案的影响。我们得出结论,在高于1 μT的磁场下,超精细场主导区域的DNP会产生足够增强的NMR信号。

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