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Development of an ultra-high vacuum system for space cold atom clock

机译:开发用于太空冷原子钟的超高真空系统

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摘要

Space cold atom clock (SCAC) is developed for a series of experiments related to laser cooling of atoms and cold atom clock in space microgravity environment. An ultra-high vacuum (UHV) system is the key element for SCAC. This paper presents the design of the UHV system and also shows the status of an initial UHV system prototype with the design and a series of special vacuum treatments whose pressure distribution satisfies the special requirements for SCAC. A dual pumping system, including ion pump and getter, is introduced, and pressures of different positions have been calculated. Experiments have been carried out to acquire the performances of the initial prototype. It is proved that the initial prototype can not only self-sustain an equilibrium pressure for more than 2 months without power but also withstand the mechanical vibration test and space environment simulation test. Furthermore, an optimization design is used to get pressures which are much lower than the desired pressure (similar to x10(-8) Pa) in the interaction zone of the system has been demonstrated. (C) 2015 Elsevier Ltd. All rights reserved.
机译:空间冷原子钟(SCAC)是为与空间微重力环境中的原子激光冷却原子和冷原子钟相关的一系列实验而开发的。超高真空(UHV)系统是SCAC的关键要素。本文介绍了特高压系统的设计,并通过设计和一系列压力分布满足SCAC特殊要求的特殊真空处理,展示了特高压系统原型的状态。引入了包括离子泵和吸气剂的双泵系统,并计算了不同位置的压力。已经进行了实验以获取初始原型的性能。事实证明,该原型机不仅可以在没有动力的情况下自行维持超过2个月的平衡压力,还可以承受机械振动测试和空间环境模拟测试。此外,已经证明了一种优化设计可用于获得比系统相互作用区域中的所需压力低得多的压力(类似于x10(-8)Pa)。 (C)2015 Elsevier Ltd.保留所有权利。

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