Claims
- 1. An atomic frequency standard laser pulse oscillator, in which there is a self-oscillatory regeneratively mode-locked laser pulse oscillator for generating an optical pulse train by extracting a clock signal with an integral multiple of the longitudinal mode of a laser cavity and by applying said clock signal to an optical modulator installed in a laser cavity, is characterized as comprising:frequency difference detection means for detecting a frequency difference between said clock signal frequency and a predetermined atomic resonance frequency; cavity length tuning means for varying the cavity length of said laser cavity so that said clock signal frequency and said predetermined atomic resonance frequency coincide; means for negatively feeding back an error signal output from said frequency difference detection means to said cavity length tuning means; and whereby generating an optical pulse train and a clock signal of a repetition frequency stabilized to said predetermined atomic resonance frequency.
- 2. The atomic frequency standard laser pulse oscillator as claimed in claim 1, wherein said predetermined atomic resonance frequency is the Ramsey resonance frequency 9.192 GHz of cesium.
- 3. The atomic frequency standard laser pulse oscillator as claimed in claim 1, wherein said predetermined atomic resonance frequency is the resonance frequency 6.834 GHz of rubidium.
- 4. The atomic frequency standard laser pulse oscillator as claimed in claim 1, wherein said predetermined atomic resonance frequency is the resonance frequency 1.420 GHz of hydrogen.
- 5. The atomic frequency standard laser pulse oscillator as claimed in claim 1, wherein said predetermined atomic resonance frequency is the resonance frequency 21.310 GHz of thallium.
- 6. The atomic frequency standard laser pulse oscillator as claimed in claim 1, wherein said predetermined atomic resonance frequency is the resonance frequency 22.834 GHz of ammonia.
- 7. The atomic frequency standard laser pulse oscillator as claimed in claim 1, comprising an optical demultiplexing circuit for demultiplexing said optical pulse train stabilized to said predetermined atomic resonance frequency and outputting an optical pulse train at a given time standard.
- 8. The atomic frequency standard laser pulse oscillator as claimed in claim 1, comprising a frequency dividing circuit for dividing said clock signal stabilized to said predetermined atomic resonance frequency and outputting a fixed frequency standard signal at a given time standard.
Priority Claims (1)
Number |
Date |
Country |
Kind |
10-358831 |
Dec 1998 |
JP |
|
Parent Case Info
This application is based on patent application Ser. No. 10-358831 (1998) filed Dec. 17, 1998 in Japan, the content of which is incorporated hereinto by reference.
US Referenced Citations (7)
Foreign Referenced Citations (5)
Number |
Date |
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0 351 782 A2 |
Jan 1990 |
EP |
5-110434 |
Apr 1993 |
JP |
08018139 |
Jan 1996 |
JP |
08340154 |
Dec 1996 |
JP |
10-74999 |
Mar 1998 |
JP |