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A compact and robust diode laser system for atom interferometry on a sounding rocket

机译:紧凑而坚固的二极管激光系统,用于在探空火箭上进行原子干涉测量

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摘要

We present a diode laser system optimized for laser cooling and atom interferometry with ultra-cold rubidium atoms aboard sounding rockets as an important milestone toward space-borne quantum sensors. Design, assembly and qualification of the system, combing micro-integrated distributed feedback (DFB) diode laser modules and free space optical bench technology, is presented in the context of the MAIUS (Matter-wave Interferometry in Microgravity) mission. This laser system, with a volume of 21 l and total mass of 27 kg, passed all qualification tests for operation on sounding rockets and is currently used in the integrated MAIUS flight system producing Bose–Einstein condensates and performing atom interferometry based on Bragg diffraction. The MAIUS payload is being prepared for launch in fall 2016. We further report on a reference laser system, comprising a rubidium stabilized DFB laser, which was operated successfully on the TEXUS 51 mission in April 2015. The system demonstrated a high level of technological maturity by remaining frequency stabilized throughout the mission including the rocket’s boost phase.
机译:我们提出了一种优化的二极管激光系统,它是在探空火箭上采用超冷rub原子进行激光冷却和原子干涉测量的,这是朝向星载量子传感器的重要里程碑。在MAIUS(微重力物质波干涉法)任务的背景下,介绍了系统的设计,组装和鉴定,结合了微集成分布式反馈(DFB)二极管激光模块和自由空间光学平台技术。该激光系统的体积为21 l,总质量为27 kg,通过了所有用于测深火箭的资格测试,目前已用于生产Bose-Einstein凝聚物并基于布拉格衍射进行原子干涉的MAIUS飞行综合系统中。 MAIUS有效载荷准备在2016年秋季发射。我们进一步报告了一个参考激光器系统,该系统包括stabilize稳定的DFB激光器,该激光器已于2015年4月成功用于TEXUS 51任务。该系统具有很高的技术成熟度在整个任务(包括火箭的助推阶段)中保持稳定的频率。

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