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Design of mercury lamp for trapped ion frequency standards

机译:捕获离子频率标准汞灯的设计

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The mercury ion trapped microwave frequency standard has the potential applications for the future satellite, deep space explorations, time keeping and broadcasting for its great advantages in the total volume, stability and lifetime. The high frequency spectrum of mercury ion trapped microwave frequency standard is pumped by the mercury lamp which has small volume and long lifetime, as the base of superiority of mercury ion trapped microwave frequency standard. However, the mercury RF discharge lamp used for optical pumping and state detection may limit the ultimate stability performance of the clock. So we have carried out many experiments to enhance the light stability and the ratio of useful light at 194nm and unwanted background light at 254nm (194/254). Finally, the stability of light power is about 3% in 3 days, the 194/254 ratio is about 1/45, and with filter bulb the ratio is about 1/3. The experimental system of mercury ion trapped microwave frequency standard will be introduced and the Hg lamp device is presented with the radiation regime.
机译:汞离子捕获的微波频率标准在总体积,稳定性和使用寿命方面具有巨大优势,因此有可能在未来的卫星,深空探测,计时和广播中应用。汞离子捕获微波频率标准的高频谱是由体积小,寿命长的汞灯泵浦的,这是汞离子捕获微波频率标准的优越性的基础。但是,用于光泵浦和状态检测的水银RF放电灯可能会限制时钟的最终稳定性。因此,我们进行了许多实验来提高光稳定性以及194nm处的有用光和254nm(194/254)下的不需要的背景光的比率。最后,光功率在3天内的稳定性约为3%,194/254的比例约为1/45,而带滤光片的灯泡的比例约为1/3。介绍了汞离子俘获微波频率标准的实验系统,并介绍了汞灯装置的辐射机理。

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