DocumentCode :
667780
Title :
Reducing the blackbody radiation shift in the NIM new fountain design
Author :
Fang Fang ; Kun Liu ; Xiaoke Yan ; Rui Suo ; Weiliang Chen ; Nianfeng Liu ; Yu Zhang ; Tianchu Li
Author_Institution :
Nat. Inst. of Metrol., Beijing, China
fYear :
2013
fDate :
21-25 July 2013
Firstpage :
232
Lastpage :
234
Abstract :
We are developing a new Cs fountain frequency standard in NIM, and shooting for the frequency uncertainty of a few parts in 1016. The new fountain will run in a lab with the temperature fluctuation of 0.3K, and no active temperature control system will be added outside the flight tube. Instead, an isothermal liner will be surrounded the flight tube. It is a special type of heat pipe, made of a thin layer of vacuum tube filled with pure water. The thermal conductivity of a glass isothermal liner is about 10 times higher than that of coppers. It also works like a low pass filter reducing the temperature fluctuations of the system. The advantage of using an isothermal liner is to make the temperature of the whole interrogation region more uniform and stable. With precision standard Pt thermometers measuring the temperatures of a few locations of the flight tube, the average temperature uncertainty is less than 50 mK. The frequency shift due to the blackbody radiation can be calculated, and the relative frequency shift due to black body radiation can reach down to 7.2E-17 of this new fountain clock. Key words: Fountain clock, blackbody radiation, heat pipe.
Keywords :
atomic clocks; blackbody radiation; caesium; frequency standards; glass; heat pipes; low-pass filters; measurement uncertainty; platinum; temperature measurement; thermal conductivity measurement; thermometers; thin film sensors; vacuum tubes; Cs; Cs fountain frequency standard; NIM; Pt; blackbody radiation shift reduction; flight tube; fountain clock; frequency uncertainty; glass isothermal liner; heat pipe; interrogation region; low pass filter; precision standard Pt thermometer; pure water; relative frequency shift; temperature 0.3 K; temperature fluctuation; temperature fluctuations reduction; temperature measurement; temperature uncertainty; thermal conductivity; thin layer; vacuum tube; Copper; Electron tubes; Heating; Isothermal processes; Temperature; Temperature measurement; Uncertainty;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
European Frequency and Time Forum & International Frequency Control Symposium (EFTF/IFC), 2013 Joint
Conference_Location :
Prague
Type :
conf
DOI :
10.1109/EFTF-IFC.2013.6702140
Filename :
6702140
Link To Document :
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