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Ultracold calcium atoms for an optical frequency standard and cold collision studies

机译:超冷钙原子用于光频率标准和冷碰撞研究

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High resolution spectroscopy is performed on ultracold calcium atoms to examine their potential for improving the optical calcium frequency standard in accuracy and stability. The ultracold atoms have been used in asymmetric frequency dependent four pulse Ramsey-Borde interferometers. In contrast to the Doppler cooled atoms the Fourier width of the exciting laser pulses is broader than the Doppler width of the atomic ensemble. This allows almost all atoms to take part in the interferometry. A shelving detection method was applied to the ultracold atoms. To gain a better understanding of cold collisions that lead to frequency shifts in the optical frequency standard, photoassociation spectroscopy (PAS) measurements are performed.
机译:对超冷钙原子进行了高分辨率光谱分析,以检查其改善光学钙频率标准的准确性和稳定性的潜力。超冷原子已用于不对称频率相关的四脉冲Ramsey-Borde干涉仪中。与多普勒冷却的原子相反,激发激光脉冲的傅立叶宽度比原子集合的多普勒宽度宽。这使得几乎所有原子都可以参与干涉测量。将货架检测方法应用于超冷原子。为了更好地理解导致光频率标准中频率偏移的冷碰撞,执行了光缔合光谱(PAS)测量。

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