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Raman pulse duration effect in high-precision atom interferometry gravimeters

机译:高精度原子干涉重力仪中的拉曼脉冲持续时间效应

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For high-precision atom interferometry gravimeters, the effect of the Raman pulse duration will become an appreciable fraction and need to be taken into account. Its influence has been reported considering a homogeneous Earth's gravitational field in some previous works. In this paper, by decomposing the time evolution operator into two parts, the free evolution part and the interaction part, we develop an approach to study this effect in a realistic situation where the Earth's gravitational field is inhomogeneous. A mathematic expression for the interferometer phase shift because of the Raman pulse duration effect is obtained, which shows that the Raman pulse duration should be taken into account when the gravimeter reaches an accuracy of 10(-10) g. (C) 2015 Optical Society of America
机译:对于高精度原子干涉仪重力仪,拉曼脉冲持续时间的影响将成为可观的分数,需要予以考虑。在以前的一些工作中,考虑到地球的重力场是均匀的,据报道其影响力很大。在本文中,通过将时间演化算子分解为两个部分,自由演化部分和相互作用部分,我们开发了一种方法来研究在地球重力场不均匀的现实情况下的这种影响。由于拉曼脉冲持续时间的影响,获得了干涉仪相移的数学表达式,表明当重力仪达到10(-10)g的精度时,应考虑拉曼脉冲的持续时间。 (C)2015年美国眼镜学会

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