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Antihydrogen formation dynamics in a multipolar neutral anti-atom trap

机译:多极中性反原子阱中的氢形成动力学

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Antihydrogen production in a neutral atom trap formed by an octupole-based magnetic field minimum is demonstrated using field-ionization of weakly bound anti-atoms. Using our unique annihilation imaging detector, we correlate antihydrogen detection by imaging and by field-ionization for the first time. We further establish how field-ionization causes radial redistribution of the antiprotons during antihydrogen formation and use this effect for the first simultaneous measurements of strongly and weakly bound antihydrogen atoms. Distinguishing between these provides critical information needed in the process of optimizing for trappable antihydrogen. These observations are of crucial importance to the ultimate goal of performing CPT tests involving antihydrogen, which likely depends upon trapping the anti-atom.
机译:使用弱结合的反原子的场电离可以证明在由基于八极的最小磁场形成的中性原子陷阱中产生了氢。使用我们独特的an灭成像探测器,我们首次通过成像和场电离将抗氢探测联系起来。我们进一步确定场电离如何在反氢形成过程中引起反质子的径向重新分布,并将这种效应用于首次同时测量强结合和弱结合的反氢原子。这些之间的区别提供了优化可捕集抗氢过程中所需的关键信息。这些观察对于执行涉及抗氢的CPT测试的最终目标至关重要,这可能取决于捕获抗原子。

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