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Antihydrogen atom formation in a CUSP trap towards spin polarized beams

机译:CUSP阱中自旋极化束中的反氢原子形成

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The ASACUSA collaboration has been making a path to realize high precision microwave spectroscopy of ground-state hyperfine transitions of antihydrogen atom in flight for stringent test of the CPT symmetry. For this purpose, an efficient extraction of a spin polarized antihydrogen beam is essential. In 2010, we have succeeded in synthesizing our first cold antihydrogen atoms employing a CUSP trap. The CUSP trap confines antiprotons and positrons simultaneously with its axially symmetric magnetic field to form antihydrogen atoms. It is expected that antihydrogen atoms in the low-field-seeking states are preferentially focused along the cusp magnetic field axis whereas those in the high-field-seeking states are defocused, resulting in the formation of a spin-polarized antihydrogen beam.
机译:与ASACUSA的合作一直在为实现飞行中抗氢原子的基态超精细跃迁的高精度微波光谱法进行严格的CPT对称性测试而努力。为此,必须有效地提取自旋极化的抗氢束。 2010年,我们成功利用CUSP阱合成了我们的第一个冷抗氢原子。 CUSP阱同时限制反质子和正电子及其轴向对称磁场以形成反氢原子。期望低场寻求状态的抗氢原子优先沿着尖端磁场轴聚焦,而高场寻求状态的抗氢原子散焦,从而形成自旋极化的抗氢束。

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