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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Metrology of the hydrogen and deuterium atoms: Determination of the Rydberg constant and Lamb shifts
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Metrology of the hydrogen and deuterium atoms: Determination of the Rydberg constant and Lamb shifts

机译:氢和氘原子的计量:雷德堡常数和兰姆位移的测定

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摘要

We present a detailed description of several experiments which have been previously reported in several letters: the determination of the 1S Lamb shift in hydrogen by a comparison of the frequencies of the 1S-3S and 2S-6S or 2S-6D two-photon transitions, and the measurement of the 2S-8S/D and 2S-12D optical frequencies. Following a complete study of the lineshape of the two-photon transitions, we provide the updated values of these frequencies which have been used in the 1998 adjustment of the fundamental constants. From an analysis taking into account these results and several other precise measurements by other authors, we show that the optical frequency measurements have superseded the microwave determination of the 2S Lamb shift and we deduce optimize values for the Rydberg constant, R_∞ = 109 737.315 685 50(84) cm~(-1) (relative uncertainty of 7.7 * 10~(-12) and for the 1S and 2S Lamb shifts L(1S) = 8 172.840(22) MHz and L(2S-2P) = 1 057.8450(29) MHz (respectively, 8 183.970(22) MHz and 1 059.2341(29) MHz for deuterium). These are now the most accurate values available.
机译:我们提供了一些实验的详细说明,这些实验先前已经以多个字母进行了报道:通过比较1S-3S和2S-6S或2S-6D两光子跃迁的频率来确定氢中1S兰姆位移,以及2S-8S / D和2S-12D光学频率的测量。在全面研究了两个光子跃迁的线形之后,我们提供了这些频率的更新值,这些更新值已用于1998年基本常数的调整中。通过对这些结果以及其他作者进行的其他几次精确测量的分析,我们发现光频率测量已经取代了微波对2S Lamb位移的确定,并得出了Rydberg常数的最佳值R_∞= 109 737.315 685 50(84)cm〜(-1)(相对不确定度7.7 * 10〜(-12),对于1S和2S兰姆位移L(1S)= 8172.840(22)MHz和L(2S-2P)= 1 057.8450(29)MHz(氘分别为8 183.970(22)MHz和1 059.2341(29)MHz),这些是目前可用的最准确的值。

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