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Distribution of an ultrastable frequency reference using optical frequency combs.

机译:使用光学频率梳的超稳定频率参考的分布。

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摘要

Frequency standards based on optical transitions in various atomic systems provide the potential for developing optical atomic clocks in the next few years that are several orders of magnitude more stable than the best existing clocks based on microwave-frequency references. The excellent stability that will be provided by optical clocks, and even the stability they currently offer, has applications in several fields, ranging from studies of fundamental physics to communication and remote synchronization. However, since optical clock systems are too complex to be portable, these applications rely on the ability to transfer over several kilometers a stable frequency reference that is linked to an optical clock. In this dissertation I present my research that enables the use of optical frequency combs from mode-locked lasers for transferring over optical fibers frequency references that are linked to optical standards.; This method of transfer requires that the optical frequency comb be stabilized to the optical standard. This is most easily accomplished by first stabilizing the comb from a mode-locked Ti:sapphire laser, which is described in detail. In particular, since intensity control of the laser is used for this stabilization, an analysis is presented on the intensity-related dynamics of the laser, enabling optimization of the control scheme. To minimize loss during transmission, it is necessary to transmit a 1550-nm comb instead of the 800-nm Ti:sapphire comb. Therefore, the stabilization of a 1550-nm mode-locked laser diode to the Ti:sapphire laser is discussed. This involves both the synchronization of the two lasers and the locking of their optical phases. The lowest reported timing jitter for a mode-locked laser diode is demonstrated.; Finally, measurements of the stability for transferring a microwave frequency over several kilometers of optical fiber using an optical frequency comb are presented. Without active stabilization, the comb provides an order of magnitude higher stability than is measured for existing methods of microwave-frequency transfer over fibers. With active cancellation of the transfer noise, the lowest timing jitter reported for the transfer of a frequency reference over several kilometers using optical fibers is achieved.
机译:基于各种原子系统中的光跃迁的频率标​​准为在未来几年中开发光学原子钟提供了潜力,该原子钟比基于微波频率基准的现有最佳时钟要稳定几个数量级。光学时钟将提供出色的稳定性,甚至它们目前提供的稳定性,在从基础物理研究到通信和远程同步的多个领域中都有应用。但是,由于光学时钟系统过于复杂而无法携带,因此这些应用依赖于能够将与光学时钟链接的稳定频率基准传输数公里的能力。在这篇论文中,我提出了我的研究,该研究使得能够使用锁模激光器的光梳来在与光学标准相关的光纤频率参考上进行传输。这种传输方法要求将光学频率梳稳定到光学标准。通过首先稳定锁模Ti:蓝宝石激光器的梳子,可以最轻松地实现这一点,对此进行了详细介绍。特别地,由于使用激光器的强度控制来实现这种稳定性,因此对激光器的强度相关动力学进行了分析,从而可以优化控制方案。为了将传输过程中的损耗降至最低,有必要传输1550 nm的梳子而不是800 nm的Ti:蓝宝石梳子。因此,讨论了将1550 nm锁模激光二极管对Ti:蓝宝石激光器的稳定性。这既涉及两个激光器的同步,也涉及其光学相位的锁定。展示了锁模激光二极管报告的最低时序抖动。最后,介绍了使用光频率梳在数千米的光纤上传输微波频率的稳定性的测量结果。在没有主动稳定的情况下,梳子所提供的稳定性要比在纤维上进行微波频率转移的现有方法所测得的稳定性高一个数量级。通过主动消除传输噪声,可以实现使用光纤在数公里范围内传输频率基准所报告的最低时序抖动。

著录项

  • 作者

    Holman, Kevin W.;

  • 作者单位

    University of Colorado at Boulder.;

  • 授予单位 University of Colorado at Boulder.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 165 p.
  • 总页数 165
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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