物理学进展 ›› 2017, Vol. 37 ›› Issue (6): 193-211.

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核自旋与乙烯分子的核自旋变体的分离和转换研究进展

孙振东,马丽莎   

  • 发布日期:2020-10-12

Nuclear spin and progresses in study on separation and conversion dynamics of nuclear spin isomers of ethylene

  • Published:2020-10-12

摘要: 原子核(简称核)由质子和中子构成,核内所有质子和中子的角动量之和通常称为核自 旋。虽然核自旋变体及其稳定性是量子力学中的基本概念,而且由核自旋不为零的同种原子组成 的所有分子都有两种或两种以上的核自旋变体,但对气相多原子分子核自旋变体的分离和相互转 换动力学的研究,直到九十年代初才打破了沉寂了几十年的局面。十多年前乙烯分子的四种核自 旋变体的分离和转换实验研究有了首次突破,本文对此做了重点介绍。文章按年代发展首先简要 地综述了构成原子核的质子和中子发现的科学史,提出了核自旋变体的概念,详细描述了氢分子 的两种核自旋变体(正氢和仲氢)以及乙烯分子的四种核自旋变体。然后着重介绍了利用光诱导 漂移技术,对气相乙烯分子的核自旋变体的分离实验;用宇称守恒与量子弛豫理论定量地描述了 核自旋变体间相互转换研究的进展。最后概述了通过仲氢对乙炔催化加氢的化学合成方法用来提 高乙烯分子的核自旋变体浓度,足以增强其核磁共振信号强度的最新成果。 关

关键词: 质子;中子;核的构成;核自旋变体;分离和转换率;光诱导漂移;量子弛豫;宇称守 恒;乙烯;精密激光光谱;核磁共振

Abstract: The nucleus is composed of protons and neutrons. The total angular momentum of the protons and neutrons in an atomic nucleus is usually referred to as nuclear spin. Nuclear spin isomers and their stability are fundamental concepts in quantum mechanics, and all molecules possessing identical nuclei with nonzero spin have two or more distinct nuclear spin isomers with different arrangements of total nuclear spin quantum numbers. Thus, researchers have tried to separate the nuclear spin isomers of gaseous polyatomic molecules and study the conversion mechanisms among them for many years. However, the studies in this field did not make progress until the early 90s. In 2005, we made a study on the separation and conversion of nuclear spin isomers of ethylene for the first time, to which we gave a special introduction in this paper. Firstly, the scientific history about the discovery of the protons and neutrons that form nucleus is briefly described chronologically; the concept of nuclear spin isomers is presented, and the nuclear spin isomers of hydrogen and ethylene molecules aref described in detail. Secondly, we give a full description of the progresses made in the experimental study on the separating the nuclear spin isomers of gaseous ethylene with light-induced drift technique, and make a quantitative explanation on the interconversion dynamics among the nuclear spin isomers of ethylene based on parity conservation and quantum relaxation theory. Finally, we briefly summarize the latest research finding. The enrichment of the nuclear spin isomers of ethylene can be achieved through chemical synthesis using the acetylene catalytically hydrogenated with para-hydrogen, which would sufficiently and successfully enhance nuclear magnetic resonance signal.

Key words: the proton; the neutron; nuclear constitution of atoms; nuclear spin isomers; separation and conversion rate of nuclear spin isomers; light-induced drift; quantum relaxation; parity conservation; ethylene; precision laser spectrum; nuclear magnetic resonance