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MERCURY TRAPPED ION FREQUENCY STANDARD FOR ULTRA-STABLE REFERENCE APPLICATIONS

机译:超稳定参考应用的汞诱捕离子频率标准

摘要

An atomic clock including an ion trap assembly, a C-field coil positioned for generating a first magnetic field in the interrogation region of the ion trap assembly, a compensation coil positioned for generating a second magnetic field in the interrogation region, wherein the combination of the first and second magnetic fields produces an ion number-dependent second order Zeeman shift (Zeeman shift) in the resonance frequency that is opposite in sign to an ion number-dependent second order Doppler shift (Doppler shift) in the resonance frequency, the C-field coil has a radius selected using data indicating how changes in the radius affect an ion-number-dependent shift in the resonance frequency, such that a difference in magnitude between the Doppler shift and the Zeeman shift is controlled or reduced, and the resonance frequency, including the adjustment by the Zeeman shift, is used to obtain the frequency standard.
机译:一种原子钟,其包括离子阱组件,定位为在离子阱组件的询问区域中产生第一磁场的C场线圈,以及定位为在询问区域中产生第二磁场的补偿线圈,其中第一和第二磁场在共振频率中产生与离子数有关的二阶塞曼位移(Zeeman shift),其符号与共振频率中与离子数有关的二阶多普勒位移(Doppler shift)符号相反场线圈的半径是使用数据选择的,该数据指示半径的变化如何影响共振频率中与离子数有关的位移,从而控制或减小多普勒位移和塞曼位移之间的大小差,从而实现共振频率(包括通过Zeeman移位进行的调整)用于获得频率标准。

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