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Limit on the electric charge of antihydrogen

机译:限制抗氢电荷

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The ALPHA collaboration has successfully demonstrated the production and the confinement of cold antihydrogen, H. An analysis of trapping data allowed a stringent limit to be placed on the electric charge of the simplest antiatom. Charge neutrality of matter is known to a very high precision, hence a neutrality limit of H provides a test of CPT invariance. The experimental technique is based on the measurement of the deflection of putatively charged H in an electric field. The tendency for trapped H atoms to be displaced by electrostatic fields is measured and compared to the results of a detailed simulation of H dynamics in the trap. An extensive survey of the systematic errors was performed, and this work focuses on those due to the silicon vertex detector, which is the device used to determine the H annihilation position. The limit obtained on the charge of the H atom is Q = (-1.3 ± 1.8 ± 0.4) × 10~(-8), representing the first precision measurement with H [1].
机译:ALPHA的合作已成功证明了冷抗氢H的产生和限制。对捕获数据的分析允许对最简单的抗原子的电荷施加严格的限制。已知物质的电荷中和精度非常高,因此H的中性极限可测试CPT不变性。实验技术基于对电场中假定带电的H的偏转的测量。测量被捕获的H原子被静电场置换的趋势,并将其与陷阱中H动力学的详细模拟结果进行比较。对系统误差进行了广泛的调查,并且这项工作集中在那些由于硅顶点检测器而引起的误差上,硅顶点检测器是用于确定H灭位置的设备。 H原子的电荷极限为Q =(-1.3±1.8±0.4)×10〜(-8),代表用H [1]进行的首次精确测量。

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