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Advances in Atomic Gyroscopes: A View from Inertial Navigation Applications

机译:原子陀螺仪的进展:惯性导航应用的观点

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摘要

With the rapid development of modern physics, atomic gyroscopes have been demonstrated in recent years. There are two types of atomic gyroscope. The Atomic Interferometer Gyroscope (AIG), which utilizes the atomic interferometer to sense rotation, is an ultra-high precision gyroscope; and the Atomic Spin Gyroscope (ASG), which utilizes atomic spin to sense rotation, features high precision, compact size and the possibility to make a chip-scale one. Recent developments in the atomic gyroscope field have created new ways to obtain high precision gyroscopes which were previously unavailable with mechanical or optical gyroscopes, but there are still lots of problems that need to be overcome to meet the requirements of inertial navigation systems. This paper reviews the basic principles of AIG and ASG, introduces the recent progress in this area, focusing on discussing their technical difficulties for inertial navigation applications, and suggests methods for developing high performance atomic gyroscopes in the near future.
机译:随着现代物理学的飞速发展,近年来已经证明了原子陀螺仪。原子陀螺仪有两种类型。原子干涉仪陀螺仪(AIG)是利用原子干涉仪感应旋转的超高精度陀螺仪。原子自旋陀螺仪(ASG)利用原子自旋感测旋转,具有高精度,紧凑的尺寸以及制造芯片级陀螺仪的可能性。原子陀螺仪领域的最新发展创造了获取高精度陀螺仪的新方法,这些方法以前是机械或光学陀螺仪所不具备的,但是要满足惯性导航系统的要求,仍然有很多问题需要克服。本文回顾了AIG和ASG的基本原理,介绍了该领域的最新进展,重点讨论了它们在惯性导航应用中的技术难点,并提出了在不久的将来开发高性能原子陀螺仪的方法。

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