亚稳氢原子及其同位素的完整自旋过滤器的研制

Q2 Physics and Astronomy
N. Faatz , R. Engels , C. Kannis , B. Breitkreutz , H. Soltner
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引用次数: 0

摘要

从量子力学的早期开始,氢作为所有原子中最简单的原子,就被研究或用于研究新的物理学。在过去,这一知识已被应用于开发一种极化计,其中可以确定质子束的初始核极化。这种Lamb-shift偏振计的关键部件是所谓的自旋滤光器,它能够通过将剩余的三个超细态淬灭到基态来分离四个亚稳氢超细态中的一个。不幸的是,传统的自旋过滤器只能单独过滤四种超精细态中的两种。因此,本工作为建立新一代的自旋过滤器提供了必要的理论和实验条件,该过滤器允许在相应的光束中分离和传输任何亚稳氢超细态及其同位素。这些知识适用于不同研究领域的其他实验,例如束缚衰变、轴子研究或宇称破坏实验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a complete spin filter for metastable hydrogen atoms and its isotopes
Since the early days of quantum mechanics, hydrogen, as the simplest of all atoms, has been studied or used to investigate new physics. In the past this knowledge has been applied to develop a polarimeter where the initial nuclear polarization of a proton beam could be determined. The key component of this Lamb-shift polarimeter is the so called spin filter, which is able to separate one of four metastable hydrogen hyperfine states by quenching the remaining three hyperfine states to the ground state. Unfortunately, the conventional spin filter is only able to filter two out of the four hyperfine states individually. Therefore, this work provides the necessary theory as well as experimental conditions to build a new generation of spin filter which permits the separation and transmission of any metastable hydrogen hyperfine state as well as for its isotopes in a corresponding beam. This knowledge is applicable for other experiments in different fields of research, e.g. the bound beta decay, axion research or parity violation experiments.
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来源期刊
Physics Open
Physics Open Physics and Astronomy-Physics and Astronomy (all)
CiteScore
3.20
自引率
0.00%
发文量
19
审稿时长
9 weeks
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