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Pulsed Optically Pumped Rubidium Clock with Ultrahigh Resonance Contrast

机译:脉冲光学泵浦铷钟与超高共振对比度

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In this paper, we report a dispersive detection technique with ultrahigh resonance contrast based on magneto-optical effect. To demonstrate specifically the advantages of the dispersive detection, we applied it in the pulsed optically pumped (POP) clock to obtain the clock signal. The contrast of Ramsey central fringe versus the parameters of pumping light, detection light and microwave power are studied experimentally. An ultrahigh resonance contrast greater than 90% is obtained. The frequency stability of POP clock in terms of Allan deviation for dispersive detection is improved by an order of magnitude over the absorptive detection under equivalent condition. We also present the preliminary experimental result in case of off resonance detection where a laser with large frequency detuning is used as detection light. The signal intensity detected by off resonance light is improved about 70% than the resonant light.
机译:在本文中,我们报告了基于磁光效应的超高谐振对比度的分散检测技术。为了具体示出了分散检测的优点,我们将其施加在脉冲光学泵浦(POP)时钟中以获得时钟信号。实验研究了Ramsey Central Frige与泵浦光,检测光和微波功率的参数的对比度。获得大于90%的超高谐振对比度。在相同条件下,在吸收检测中,在Allan分散检测方面的POP时钟的频率稳定性在相同状态下的吸收性检测中提高。我们还介绍了截止谐振检测的初步实验结果,其中具有大频率静脉的激光用作检测光。截止谐振光检测的信号强度比谐振光提高了约70%。

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