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Physics of systematic frequency variations in hydrogen masers

机译:氢微波激射中系统频率变化的物理学

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摘要

The frequency stability of hydrogen masers for intervals longer than 10/sup 4/ s is currently limited by systematic processes. The physics of frequency-determining mechanisms internal to the maser that are susceptible to systematic variations, and the connections between these internal mechanisms and external environmental factors are discussed. From estimates of the magnitudes of systematic effects, it is found that the primary internal mechanisms limiting long-term maser frequency stability are cavity pulling, at the level of parts in 10/sup 15/ per day, and wall shift variations, at the level of parts in 10/sup 16/ to parts in 10/sup 15/ per day. Strategies for reducing systematic frequency variations are discussed.
机译:目前,氢激射器的频率稳定性超过10 / sup 4 / s的时间间隔受到系统过程的限制。激振器内部频率确定机制的物理特性容易受到系统变化的影响,并讨论了这些内部机制与外部环境因素之间的联系。从系统影响的大小的估计中,发现限制长期maser频率稳定性的主要内部机制是腔拉力(每天10 / sup 15 /的零件水平)和壁位移变化(每天的水平)每天以10 / sup 16 /为单位的零件数以10 / sup 15 /为零件的零件数。讨论了减少系统频率变化的策略。

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