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Design of the new NIM6 fountain with collecting atoms from a 3D MOT loading optical molasses

机译:新型NIM6喷泉的设计,可从不装载光学糖蜜的3D中收集原子

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We report the design of a new cesium fountain clock NIM6, which is under construction in NIM. Besides some improvements on the vacuum system, Ramsey cavity and microwave synthesizer to reduce the Type B uncertainty. Another major improvement on NIM6 is to collect more atoms from a MOT loading optical molasses and optical pumping to get a better signal to noise ratio at the detection. The atom distribution will be more uniform compared with a 2D MOT loading optical molasses, and the diameter of the cloud can be adjusted by the intensity and detuning of lights during the post cooling to keep the collisional-induced frequency shift low. The atom numbers can be further increased by a new de-pumping - optical pumping procedure to pump atoms to the |F=3, m=0> clock state directly. With a new cryogenic sapphire oscillator (CSO) based frequency synthesizer, NIM6 is aiming to reach the quantum projection noise, thus leading to a reduced Type A uncertainty compared with NIM5.
机译:我们报告了NIM正在建造的新铯喷泉钟NIM6的设计。除了对真空系统,Ramsey腔和微波合成器进行了一些改进以外,还降低了B型不确定性。 NIM6的另一个主要改进是从装载MOT的糖蜜和光泵浦中收集更多的原子,从而在检测时获得更好的信噪比。与装载2D MOT的光学糖蜜相比,原子分布将更加均匀,并且可以通过在后冷却期间通过光的强度和失谐来调整云的直径,以使碰撞引起的频移保持较低。可以通过新的去泵浦-光泵浦程序进一步增加原子数,以将原子直接泵浦到| F = 3,m = 0>时钟状态。借助新型基于低温蓝宝石振荡器(CSO)的频率合成器,NIM6旨在达到量子投影噪声,从而与NIM5相比,降低了A型不确定性。

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