原子的光学取向

B. Alekseev, R.F. Demyanenko, P. Demyanenko, V. Levchenko, M. Prokofiev
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引用次数: 0

摘要

只提供摘要形式。我们讨论了原子在气体和蒸气中的光学取向(AOO)的物理方面;实验过程及该效应在科学研究中的应用可能性。这种奇特现象的本质包括以下内容:具有一定波长的光引起原子(通常在透明的气体细胞中)从最接近的受激原子的基本状态跃迁,原子从最接近的受激原子返回,释放出适当频率的量子。这些塞曼亚能级被弱磁场分裂。实验中观察到aoo体系对许多碱性原子和汞等同位素蒸气的核磁共振吸收。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Atoms' optical orientation
Summary form only given. We discussed the physical aspects of the atoms' optical orientation (AOO) in gases and vapours; experimental procedure and the possibility of this effect's usage in scientific study. The essence of this exotic phenomenon consists of the following: light with a certain wavelength raises transitions of atoms (usually in transparent gaseous cells) from the basic condition on the nearest excited ones, from which the atoms pass back, letting out quantums of the appropriate frequency. These Zeeman sublevels are split by a weak magnetic field. Experimentally the NMR-absorption by an AOO-system was observed in vapours of many alkaline atoms and isotopes of mercury etc.
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