Tang Biao, Zhou Lin, Xiong Zongyuan, Wang Jin, Zhan Mingsheng
State Key Laboratory of Magnetic Resonance and Atomic and Molecular Physics, Wuhan Institute of Physics and Mathematics, Chinese Academy of Sciences, Wuhan 430071, China.
Rev Sci Instrum. 2014 Sep;85(9):093109. doi: 10.1063/1.4895911.
Vibration isolation at low frequency is important for some precision measurement experiments that use atom interferometry. To decrease the vibrational noise caused by the reflecting mirror of Raman beams in atom interferometry, we designed and demonstrated a compact stable active low frequency vibration isolation system. In this system, a digital control subsystem is used to process and feedback the vibration measured by a seismometer. A voice coil actuator is used to control and cancel the motion of a commercial passive vibration isolation platform. With the help of field programmable gate array-based control subsystem, the vibration isolation system performed flexibly and accurately. When the feedback is on, the intrinsic resonance frequency of the system will change from 0.8 Hz to about 0.015 Hz. The vertical vibration (0.01-10 Hz) measured by the in-loop seismometer is reduced by an additional factor of up to 500 on the basis of a passive vibration isolation platform, and we have proved the performance by adding an additional seismometer as well as applying it in the atom interferometry experiment.
对于一些使用原子干涉测量法的精密测量实验而言,低频隔振非常重要。为了降低原子干涉测量法中拉曼光束反射镜所引起的振动噪声,我们设计并展示了一种紧凑稳定的有源低频隔振系统。在该系统中,一个数字控制子系统用于处理和反馈由地震仪测量到的振动。一个音圈致动器用于控制并抵消商用无源隔振平台的运动。借助基于现场可编程门阵列的控制子系统,隔振系统灵活且精确地运行。当反馈开启时,系统的固有共振频率将从0.8赫兹变为约0.015赫兹。基于无源隔振平台,环路内地震仪测量到的垂直振动(0.01 - 10赫兹)额外降低了高达500倍,并且我们通过添加一个额外的地震仪以及将其应用于原子干涉测量实验证明了该性能。