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DESIGN OF THE MAIUS-2/3 ATOM INTERFEROMETER ON A SOUNDING ROCKET

机译:火箭炮MAIUS-2 / 3原子干涉仪的设计

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The two sounding rocket missions, MAIUS-2 and MAIUS-3 are aiming at the generation of the first Potassium 41 Bose-Einstein-Condensate (BEC) in space, and at sequential and simultaneous atom interferometry with Potassium 41 and Rubidium 87. The launchis planned for 2017 and 2018 from Esrange in Sweden on-board a VSB-30 sounding rocket providing approximately 360 s of microgravity time. The payload is based on the design of the MAIUS-1 single species (Rubidium) atom interferometer payload. The payload is divided into five subsystems: Physics package, laser system, laser electronics, electronics, and batteries. This paper describes the design, optimization and qualification procedure of the subsystems of the MAIUS-B payload.
机译:MAIUS-2和MAIUS-3这两个冠冕堂皇的火箭任务的目标是在太空中产生第一个钾41玻色-爱因斯坦凝聚物(BEC),并与钾41和Rub 87进行连续和同时原子干涉测量。计划在2017年和2018年从瑞典埃斯兰奇(Esrange)搭载一艘VSB-30探空火箭,提供约360 s的微重力时间。有效负载基于MAIUS-1单物种(铀)原子干涉仪有效负载的设计。有效负载分为五个子系统:物理包,激光系统,激光电子设备,电子设备和电池。本文介绍了MAIUS-B有效载荷子系统的设计,优化和鉴定程序。

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