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High-contrast sub-Doppler absorption spikes in a hot atomic vapor cell exposed to a dual-frequency laser field

机译:暴露于双频激光场的热原子蒸气池中的高对比度亚多普勒吸收峰值

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摘要

The saturated absorption technique is an elegant method widely used in atomic and molecular physics for high-resolution spectroscopy, laser frequency standards and metrology purposes. We have recently discovered that a saturated absorption scheme with a dual-frequency laser can lead to a significant sign reversal of the usual Doppler-free dip, yielding a deep enhanced-absorption spike. In this paper, we report detailed experimental investigations of this phenomenon, together with a full in-depth theoretical description. It is shown that several physical effects can support or oppose the formation of the high-contrast central spike in the absorption profile. The physical conditions for which all these effects act constructively and result in very bright Doppler-free resonances are revealed. Apart from their theoretical interest, results obtained in this manuscript are of great interest for laser spectroscopy and laser frequency stabilization purposes, with applications in laser cooling, matter-wave sensors, atomic clocks or quantum optics.
机译:饱和吸收技术是一种优雅的方法,广泛用于原子和分子物理学中,用于高分辨率光谱,激光频率标准和计量目的。我们最近发现,双频激光的饱和吸收方案可以导致通常的无多普勒下陷的明显符号反转,从而产生深层的吸收峰。在本文中,我们报告了对该现象的详细实验研究,并提供了完整的深入理论描述。结果表明,几种物理效应可以支持或反对吸收曲线中高对比度中心尖峰的形成。揭示了所有这些作用相长作用并导致非常明亮的无多普勒共振的物理条件。除了理论上的兴趣之外,本手稿中获得的结果对于激光光谱学和激光频率稳定化的目的也非常感兴趣,并应用于激光冷却,物质波传感器,原子钟或量子光学中。

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