...
首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Potential for improving the Rubidium Frequency Standard with a novel optical pumping scheme using diode lasers
【24h】

Potential for improving the Rubidium Frequency Standard with a novel optical pumping scheme using diode lasers

机译:利用二极管激光器的新型光泵浦方案提高improving频率标准的潜力

获取原文
获取原文并翻译 | 示例
           

摘要

Frequency stability of a Rubidium Frequency Standard (RFS) is directly related to the signal-to-noise ratio (S/N) of the microwave-induced (6834 MHz) optical signal which is proportional to the fractional atomic population difference between the two M/sub F/=0 ground state sublevels of /sup 87/Rb. In the present RFSs this fractional population difference is small (>1%). S/N can be substantially improved by concentrating all of the atoms in one of the two M/sub F/=0 sublevels. Potentially, this could lead to a significant improvement in the short-term performance of RFSs. We have developed a novel scheme for concentrating a large fraction of the Rb atoms in one of the two M/sub F/=0 ground state sublevels. We optically pump the Rb vapor with circularly polarized light from a AlGaAs diode laser tuned to the D/sub 1/ transition (794.7 nm). Nearly all of the atoms are concentrated in one of the two high angular momentum states (M/sub F/=2 or -2 sublevels depending on the handedness of the circular polarization). The pumping laser is switched off and two radiofrequency (RF) /spl pi/-pulses are applied sequentially. The first /spl pi/-pulse transfers the atoms from the 2,2(F,M/sub F/) sublevel to the 2,1 sublevel and the second /spl pi/-pulse transfers the atoms from the 2,1 sublevel to the 2,0 sublevel. The resulting population distribution is diagnosed using a second AlGaAs diode laser (weak probe) in conjunction with a microwave field tuned to the 0-0 transition (6834 MHz). We obtain a fractional population difference of 0.7-0.9 between the two M/sub F/=0 sublevels. This should result in an improvement in the S/N by a factor of 70-90 over the lamp pumped RFSs. This could potentially be of considerable importance towards the development of future RFSs. Various relaxations and field inhomogeneities limit the transfer efficiency from being 100%. The details of the experimental technique and possible applications are discussed.
机译:Frequency频率标准(RFS)的频率稳定性与微波感应(6834 MHz)光信号的信噪比(S / N)直接相关,该信噪比与两个M原子分数的分数差成比例/ sub F / = 0 / sup 87 / Rb的基态子级别。在目前的RFS中,人口比例差异很小(> 1%)。通过集中两个M / sub F / = 0子级之一中的所有原子,可以大大提高S / N。潜在地,这可能导致RFS的短期性能得到显着改善。我们已经开发了一种新颖的方案,可以将大部分Rb原子集中在两个M / sub F / = 0基态子级之一中。我们用来自AlGaAs二极管激光器的圆偏振光将Rb蒸气泵浦到调谐到D / sub 1 /跃迁(794.7 nm)。几乎所有原子都集中在两个高角动量态之一(取决于圆极化的旋向性,M / sub F / = 2或-2个子能级)中。关闭泵浦激光器,并依次施加两个射频(RF)/ spl pi /-脉冲。第一个/ spl pi /-脉冲将原子从2,2(F,M / sub F /)子级转移到2,1子级,第二个/ spl pi /-脉冲将原子从2,1子级转移到2,0子级别。使用第二个AlGaAs二极管激光器(弱探头)结合调谐到0-0跃迁(6834 MHz)的微波场,可以诊断得到的总体分布。我们获得两个M / sub F / = 0子级别之间的人口分数差异0.7-0.9。与泵浦的RFS相比,这将导致S / N改善70-90倍。这对于未来RFS的开发可能具有相当重要的意义。各种弛豫和场不均匀性限制了传输效率为100%。讨论了实验技术的细节和可能的应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号