Optical Clock Based on Two-Photon Spectroscopy of the Nuclear Transition in a 229Th Ion in a Monochromatic Field

IF 1.4 4区 物理与天体物理 Q3 PHYSICS, MULTIDISCIPLINARY
V. I. Yudin, A. V. Taichenachev, O. N. Prudnikov, M. Yu. Basalaev, A. N. Goncharov, S. V. Chepurov, V. G. Pal’chikov
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Abstract

The possibility of two-photon laser spectroscopy of the nuclear clock transition (148.38 nm) in the 229Th isotope has been investigated using an intense monochromatic laser field at twice the wavelength (296.76 nm). Our estimates show that due to the electron bridge process in the doubly ionized ion 229Th2+ the sufficient intensity of a continuous laser field is about 10–100 kW/cm2, which is within the reach of modern laser systems. This unique possibility is an result of the presence in the electronic spectrum of the ion 229Th2+ of an exceptionally close intermediate (for the two-photon transition) energy level, forming a strong dipole (\(E1\)) transition with the ground state at the wavelength of 297.86 nm, which differs from the probe field wavelength (296.76 nm) by only 1.1 nm. The obtained results can be used for the practical creation of ultra-precise nuclear optical clocks based on thorium-229 ions without using vacuum ultraviolet. Moreover, we develop an alternative approach to the description of the electron bridge phenomenon in an isolated ion (atom) using the hyperfine interaction operator, that is important for the general quantum theory of an atom. In particular, this approach shows that the contribution to the electron bridge from the nuclear quadrupole moment can be comparable to the contribution from the nuclear magnetic moment.

基于单色场中229离子核跃迁双光子光谱的光钟
利用两倍波长(296.76 nm)的强单色激光场,研究了229同位素核时钟跃迁(148.38 nm)的双光子激光光谱的可能性。我们的估计表明,由于双电离离子229Th2+中的电子桥过程,连续激光场的足够强度约为10-100 kW/cm2,这是现代激光系统所能达到的。这种独特的可能性是离子229Th2+的电子谱中存在一个非常接近的中间能级(对于双光子跃迁)的结果,形成一个强偶极子(\(E1\))跃迁,基态波长为297.86 nm,与探针场波长(296.76 nm)仅相差1.1 nm。所得结果可用于不使用真空紫外线的基于钍-229离子的超精密核光学钟的实际制作。此外,我们开发了一种利用超精细相互作用算子描述孤立离子(原子)中电子桥现象的替代方法,这对原子的一般量子理论是重要的。特别是,这种方法表明,核四极矩对电子桥的贡献可以与核磁矩的贡献相媲美。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
JETP Letters
JETP Letters 物理-物理:综合
CiteScore
2.40
自引率
30.80%
发文量
164
审稿时长
3-6 weeks
期刊介绍: All topics of experimental and theoretical physics including gravitation, field theory, elementary particles and nuclei, plasma, nonlinear phenomena, condensed matter, superconductivity, superfluidity, lasers, and surfaces.
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