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Synchronization of active atomic clocks via quantum and classical channels

机译:通过量子和古典频道的主动原子钟同步

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Superradiant lasers based on atomic ensembles exhibiting ultranarrow optical transitions can emit light of unprecedented spectral purity and may serve as active atomic clocks. We consider two frequency-detuned active atomic clocks, which are coupled in a cascaded setup, i.e., asmaster and slave lasers, and study the synchronization of the slave to the master clock. In a setup where both atomic ensembles are coupled to a common cavity mode, such synchronization phenomena have been predicted byXu et al. [M.Xu, D. A. Tieri, E. C. Fine, J.K. Thompson, and M. J. Holland, Phys. Rev. Lett. 113, 154101 (2014).] and experimentally observed by Weiner et al. (J. M. Weiner et al., arXiv:1503.06464). Here we demonstrate that synchronization still occurs in cascaded setups but exhibits distinctly different phase diagrams.We study the characteristics of synchronization in comparison to the case of coupling through a common cavity. We also consider synchronization through a classical channel where light of the master laser is measured phase sensitively and the slave laser is injection locked by feedback and compare to the results achievable by coupling through quantum channels.
机译:基于呈现超窄光学跃迁原子合奏超辐射激光器可以发射光前所未有光谱纯度的,并且可以充当活性原子钟。我们考虑两种频率失谐活性原子钟,其耦合在级联设置,即,asmaster和从激光器,并研究从到主时钟的同步。在其中两个原子合奏耦合到公共腔模式的设置,这样的同步的现象已经被预测byXu等。 [M.Xu,D. A. Tieri,E. C.精细,J.K.汤普森,和M. J.荷兰,物理。 rev. lett。 113,154101(2014)。]和实验由Weiner等观察。 (J. M. Weiner等,的arXiv:1503.06464)。在这里,我们证明了同步仍然出现在级联设置,但表现出明显不同的相位diagrams.We研究同步的特性相比,通过一个共同的腔耦合的情况下。我们还通过在光主激光器的测量相位灵敏经典信道考虑同步和从激光器是注入锁定由反馈,并比较通过量子通道耦合达到的结果。

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