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NITROGEN BUFFER GAS EXPERIMENTS IN MERCURY TRAPPED ION FREQUENCY STANDARDS

机译:汞捕获离子频率标准中的氮气缓冲气体实验

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Practical, continuous operating mercury trapped ion frequency standards have traditionally used a helium buffer gas to increase loading efficiency and cool ions to near room temperature. The fractional frequency shift of the 40,507,347.9968x Hz clock transition due to collisions with helium is measured to be (df/dP_(He))(1/f) =+l.2xl0~(-10)/Pa The use of a nitrogen buffer gas is considered for low power and mass applications where unattended operational life must be greater than 10 years. The nitrogen pressure shift is measured to be (df/dP_(N2))(1/f)=-8.7xl0~(-9)/Pa. Nitrogen would allow long operation with a only small ion pump but require increased pressure regulation to achieve the ultra-high stability obtained using helium in multipole Hg~(+) standards.
机译:实用,连续运营的汞捕获离子频率标准传统上使用氦气缓冲气体,以将负载效率和冷离子提高到接近室温。 40,507,347.9968x Hz时钟转换的分数频率测量为(DF / DP_(HE))(1 / F)= + L.10〜(-10)/ PA使用氮气缓冲气体被认为是低功率和质量应用,其中无人看管的操作寿命必须大于10年。测量氮气移位(DF / DP_(N2))(1 / F)= - 8.7xL0〜(-9)/ PA。氮气将允许使用唯一小型离子泵的长操作,但需要增加压力调节,以实现使用氦在多极HG〜(+)标准中获得的超高稳定性。

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