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首页> 外文期刊>Nature Communications >Measurement of the variation of electron-to-proton mass ratio using ultracold molecules produced from laser-cooled atoms
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Measurement of the variation of electron-to-proton mass ratio using ultracold molecules produced from laser-cooled atoms

机译:使用激光冷却原子产生的超容器分子测量电子 - 质子质量比的变化

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Experimental techniques to manipulate cold molecules have seen great development in recent years. The precision measurements of cold molecules are expected to give insights into fundamental physics. Here we use a rovibrationally pure sample of ultracold KRb molecules to improve the measurement on the stability of electron-to-proton mass ratio [Formula: see text]. The measurement is based upon a large sensitivity coefficient of the molecular spectroscopy, which utilizes a transition between a?nearly degenerate pair of vibrational levels each associated with a different electronic potential. Observed limit on temporal variation of μ is [Formula: see text], which is better by a factor of five compared with the most stringent laboratory molecular limits to date. Further improvements should be straightforward, because our measurement was only limited by statistical errors.
机译:近年来,操纵冷分子的实验技术已经看到了很大的发展。预计冷分子的精确测量将向基本物理学提供洞察力。在这里,我们使用鲁释纯的超级krb分子样品来改善电子 - 质子质量比的稳定性的测量[公式:参见文本]。测量基于分子光谱的大的灵敏度系数,其利用a之间的过渡Δ几乎简并对与不同的电子电位相关联的振动水平。观察到μ的时间变化的限制是[公式:参见文本],与迄今为止最严格的实验室分子限量相比,这比迄今为止更好。进一步的改进应该是简单的,因为我们的测量仅受统计误差的限制。

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