首页> 外文期刊>Hyperfine Interactions: Journal Devoted to Research in the Border Regions of Solid State, Atomic and Nuclear Physics >The atomic coilgun and single-photon cooling: A method for trapping and cooling of hydrogen isotopes
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The atomic coilgun and single-photon cooling: A method for trapping and cooling of hydrogen isotopes

机译:原子线圈枪和单光子冷却:捕获和冷却氢同位素的方法

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As the simplest atom, hydrogen has a unique role as a testing ground of fundamental physics. Precision measurements of the hydrogen atomic structure provide stringent tests of current theory, while tritium is an excellent candidate for studies of β-decay and possible measurement of the neutrino rest mass. Furthermore, precision measurement of antihydrogen would allow for tests of fundamental symmetries. Methods demonstrated in our lab provide an avenue by which hydrogen isotopes can be trapped and cooled to near the recoil limit. The atomic coilgun, which we have demonstrated with metastable neon and molecular oxygen, provides a general method of stopping a supersonic beam of any paramagnetic species. This tool provides a method by which hydrogen and its isotopes can be magnetically trapped at around 100 mK using a room temperature apparatus. Another tool developed in our laboratory, single-photon cooling, allows further cooling of a trapped sample to near the recoil limit. This cooling method has already been demonstrated on a trapped sample of rubidium. We report on the progress of implementing these methods to trap and cool hydrogen isotopes, and on the prospects for using cold trapped hydrogen for precision measurements.
机译:作为最简单的原子,氢作为基础物理的试验场具有独特的作用。氢原子结构的精确测量提供了对当前理论的严格检验,而is是研究β衰变以及可能的中微子静止质量测量的极佳候选者。此外,抗氢的精确测量将允许测试基本对称性。在我们的实验室中演示的方法提供了一种途径,可以通过它捕获氢同位素并将其冷却到接近后坐力极限。我们已经用亚稳态氖和分子氧证明了原子线圈枪,它提供了一种阻止任何顺磁性物种的超音速束的通用方法。该工具提供了一种方法,通过该方法,可以使用室温设备将氢及其同位素以大约100 mK的磁性捕获。我们实验室开发的另一种工具,单光子冷却,可以将捕获的样品进一步冷却到接近后坐力极限。这种冷却方法已经在捕获的sample样品上得到了证明。我们报告了实施这些方法以捕获和冷却氢同位素的进展,以及使用冷捕获的氢进行精确测量的前景。

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