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I.C.E.: A TRANSPORTABLE ATOMIC INERTIAL SENSOR FOR TEST IN MICROGRAVITY

机译:I.C.E.:一种可转运原子惯性传感器,用于微匍匐

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We present our the construction of an atom interferometer for inertial sensing in microgravity, as part of the I.C.E. (Interferometrie Coherente pour l'Espace) collaboration. On-board laser systems have been developed based on fibre-optic components, which are insensitive to mechanical vibrations and acoustic noise, have sub-MHz linewidth, and remain frequency stabilised for weeks at a time. A compact, transportable vacuum system has been built, and used for laser cooling and magneto-optical trapping. We will use a mixture of quantum degenerate gases, bosonic 87{sup left}Rb and fermionic 40{sup left}K, in order to find the optimal conditions for precision and sensitivity of inertial measurements. Microgravity will be realised in parabolic flights lasting up to 20s in an Airbus.
机译:我们介绍了用于在微匍匐的惯性感测的原子干涉仪的结构,作为I.C.E的一部分。 (干涉术相干倒入L'eSpace)合作。基于光纤组件开发的板载激光系统,这对机械振动和声学噪声不敏感,具有Sub-MHz线宽,并且一次保持频率稳定。一块紧凑,可运输的真空系统已经建成,并用于激光冷却和磁光捕获。我们将使用量子简并气体的混合物,玻色子87 {sup左} rb和fermionic 40 {sup left} k,以找到惯性测量的精度和敏感性的最佳条件。微争夺将在空中客车中持续高达20多岁的抛物线航班中实现。

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