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Reliability characteristics of microfabricated Rb mini-lamps for optical pumping in miniature atomic clocks and magnetometers

机译:微型原子钟和磁力计中用于光泵浦的微型Rb微型灯的可靠性特征

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With the rising need for microfabricated chip-scale atomic clocks to enable high precision timekeeping in portable applications, there has been active interest in developing miniature (<few cm~3), chip-scale alkali vapor lamps, since vapor plasma discharge sources are currently the standard for optical pumping in double-resonance clocks. We reported in 2012 a first microfabricated chip-scale Rubidium dielectric barrier discharge lamp. The device's preliminary results indicated its high potential for optical pumping applications and wafer-scale batch fabrication. The chip-scale plasma light sources were observed to be robust with no obvious performance change after thousands of plasma ignitions, and with no electrode erosion from plasma discharges since the electrodes are external. However, as atomic clocks have strict lamp performance requirements including less than 0.1 % sub-second optical power fluctuations, power consumption less than 20 mW and a device lifetime of at least several years, it is important to understand the long-term reliability of these Rb planar mini-lamps, and identify the operating conditions where these devices can be most reliable and stable. In this paper, we report on the reliability of such microfabricated lamps including a continuous several month run of the lamp where the optical power, electrical power consumption and temperature stability were continuously monitored. We also report on the effects of temperature, rf-power and the lamp-drive parasitics on the optical power stability and discuss steps that could be taken to further improve the device's performance and reliability.
机译:随着对微型芯片级原子钟的需求日益增加,以实现便携式应用中的高精度计时,人们一直对开发微型(<几厘米〜3)芯片级碱性蒸气灯产生了浓厚的兴趣,因为目前有蒸气等离子体放电源双谐振时钟中光泵浦的标准。我们在2012年报告了第一款微制造的芯片级Rub介电势垒放电灯。该设备的初步结果表明,它在光泵浦应用和晶圆级批量生产中具有很高的潜力。观察到芯片级等离子光源坚固耐用,经过数千次等离子点火后,性能没有明显变化,并且由于电极位于外部,因此等离子体放电不会腐蚀电极。但是,由于原子钟对灯的性能要求严格,包括小于0.1%的亚秒级光功率波动,小于20 mW的功耗以及至少几年的设备寿命,因此了解这些时钟的长期可靠性非常重要。 RB平面微型灯,并确定这些设备最可靠和稳定的工作条件。在本文中,我们报告了这种微型灯的可靠性,其中包括连续几个月运行的灯,其中可连续监测光功率,电功率消耗和温度稳定性。我们还报告了温度,射频功率和灯驱动寄生效应对光功率稳定性的影响,并讨论了可采取的措施来进一步改善设备的性能和可靠性。

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