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Testing spatial α-variation with optical atomic clocks based on highly charged ions

机译:基于高电荷离子测试光学原子钟的空间α变化

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We review recent works illustrating the potential use of highly charged ions as the basis of optical atomic clocks of exceptional accuracy and very high sensitivity to variation of the fine structure constant, a. The tendency towards large transition energies in highly charged ions can be overcome using level crossings, which allow transitions between different orbitals to be within the range of usual lasers. We present simple scaling laws that demonstrate reduced systematics that could be realised in highly charged ion clocks. Such clocks could allow us to corroborate astronomical studies that suggest a spatial gradient in values of a across the Universe.
机译:我们审查了最近的作品,说明了高度电荷的离子的潜在使用作为光学原子时钟的卓越精度和对细结构恒定变化的敏感性非常高的敏感性。可以使用水平交叉克服高度电荷离子的大过渡能量的趋势,这允许不同轨道之间的过渡到通常在通常的激光器范围内。我们提出了简单的缩放法律,证明了减少的系统性,可以在高度充电的离子时钟中实现。这些时钟可以允许我们证实天文学研究,这些研究表明围绕宇宙的价值观的空间梯度。

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