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Progress Toward an Atomic Clock Based on a Continuous Cold Rubidium Beam

机译:基于连续冷铷梁的原子时钟的进展

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We reported on the progress toward an atomic clock based on a continuous cold ~(87)Rb atomic beam. The atomic beam source is generated directly from a 2D~+ Magneto-Optical Trapping (MOT) with the flux of about 3×10~9 atoms/s and mean longitudinal velocity of 10 m/s. The beam had a free evolution time of 9 ms over the separated distance of 90 mm, producing a 54-Hz-wide Raman-Ramsey fringe. The Signal-to-Noise ratio (SNR) of Raman-Ramsey fringes is effectively increased by modulation and demodulation methods, which offer a promising approach to improving the frequency stability of the atomic clock.
机译:我们报道了基于连续冷〜(87)RB原子束的原子钟的进展。 原子光束源直接由2D〜+磁光捕获(MOT)产生,所述通量约为3×10〜9原子/ s和平均纵向速度为10m / s。 该光束在分离距离90mm的分离距离上具有9ms的自由演化时间,产生54-Hz宽的拉曼边缘。 通过调制和解调方法有效地增加了拉曼-Ramsey条纹的信噪比(SNR),该方法提供了提高原子钟频率稳定性的有希望的方法。

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