From LASER physics to the para-hydrogen pumped RASER

IF 7.3 2区 化学 Q2 CHEMISTRY, PHYSICAL Progress in Nuclear Magnetic Resonance Spectroscopy Pub Date : 2019-10-01 DOI:10.1016/j.pnmrs.2019.05.003
S. Appelt , A. Kentner , S. Lehmkuhl , B. Blümich
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引用次数: 19

Abstract

The properties of the LASER with respect to self-organization are compared with the key features of the p-H2 pumped RASER. According to LASER theory the equations of motion for the LASER can be derived from the enslaving principle, i.e. the slowest-changing order parameter (the light field in the resonator) enslaves the rapidly relaxing atomic degrees of freedom. Likewise, it is shown here that the equations of motion for the p-H2 pumped RASER result from a set of order parameters, where the transverse magnetization of the RASER-active spin states enslaves the electromagnetic modes. The consequences are striking for nuclear magnetic resonance (NMR) spectroscopy, since long-lasting multi-mode RASER oscillations enable unprecedented spectroscopic resolution down to the micro-Hertz regime. Based on the theory for multi-mode RASER operation we analyze the conditions that reveal either the collapse of the entire NMR spectrum, the occurrence of self-organized frequency-combs, or RASER spectra which reflect the J-coupled network of the molecule. Certain RASER experiments involving the protons of 15N pyridine or 3-picoline molecules pumped with p-H2 via SABRE (Signal Amplification By Reversible Exchange) show either a single RASER oscillation in the time domain, giant RASER pulses or a complex RASER beat pattern. The corresponding 1H spectra consist of one narrow line, equidistant narrow lines (frequency-comb), or highly resolved lines reporting NMR properties, respectively. Numerous applications in the areas of material sciences, fundamental physics and medicine involving high precision sensors for magnetic fields, rotational motions or molecular structures become feasible.

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从激光物理到对氢抽运激光
将激光的自组织特性与p-H2泵浦激光的主要特性进行了比较。根据激光理论,激光的运动方程可以由奴役原理推导出来,即变化最慢的阶参量(谐振腔中的光场)奴役了快速放松的原子自由度。同样地,本文表明,p-H2泵浦激光的运动方程是由一组有序参数产生的,其中激光自旋态的横向磁化约束了电磁模式。这对核磁共振(NMR)光谱学的影响是惊人的,因为长时间的多模激光振荡使光谱分辨率达到了前所未有的微赫兹范围。基于多模雷射操作理论,我们分析了整个核磁共振谱崩溃、自组织频率梳的出现或反映分子j耦合网络的雷射谱的条件。某些激光实验涉及15N吡啶或3-吡啶分子的质子,通过SABRE(可逆交换信号放大)泵浦p-H2,显示出在时域内的单个激光振荡,巨大的激光脉冲或复杂的激光拍模式。相应的1H谱分别由一条窄谱线、等距窄谱线(频率梳)或高分辨谱线组成,分别报告了核磁共振特性。在材料科学,基础物理和医学领域的许多应用涉及高精度磁场传感器,旋转运动或分子结构变得可行。
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来源期刊
CiteScore
14.30
自引率
8.20%
发文量
12
审稿时长
62 days
期刊介绍: Progress in Nuclear Magnetic Resonance Spectroscopy publishes review papers describing research related to the theory and application of NMR spectroscopy. This technique is widely applied in chemistry, physics, biochemistry and materials science, and also in many areas of biology and medicine. The journal publishes review articles covering applications in all of these and in related subjects, as well as in-depth treatments of the fundamental theory of and instrumental developments in NMR spectroscopy.
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