一種CPT銫原子鐘控制系統(tǒng)的設計
2020年電子技術應用第12期
王淼兒,姚 燕
中國計量大學 計量測試工程學院,浙江 杭州310018
摘要: 實現(xiàn)微型化、低功耗的相干布居囚禁(CPT)原子鐘對于其在通信、定位等精密測量領域的應用具有重要意義。而外圍控制電路控制頻率和激光精準輸出是實現(xiàn)相干布居囚禁原子鐘的關鍵技術。設計了一種CPT銫原子鐘外圍控制電路系統(tǒng)。系統(tǒng)利用微調和粗調兩級電流調節(jié)共同驅動VCSEL激光器工作,相對于單一電流調節(jié),輸出更加精準;采用鎖相環(huán)電路產生可調制的微波信號;為實現(xiàn)微波功率可以調節(jié),采用PIN二極管調節(jié)微波功率衰減;同時采用軟件調制解調方法代替?zhèn)鹘y(tǒng)硬件調制解調電路,節(jié)約電路邏輯資源。實驗測試結果表明,微波調制激光器產生相干調頻多色光,微波頻率為4.596 267 GHz時,微波輸出功率達到-3.33 dBm。微波射頻電路在1 kHz頻率偏移量下,相位噪聲低于-80 dBc/Hz,具有較好的性能。
中圖分類號: TB939
文獻標識碼: A
DOI:10.16157/j.issn.0258-7998.200805
中文引用格式: 王淼兒,姚燕. 一種CPT銫原子鐘控制系統(tǒng)的設計[J].電子技術應用,2020,46(12):57-60,66.
英文引用格式: Wang Miaoer,Yao Yan. Design of control system for a CPT Cesium atomic clock[J]. Application of Electronic Technique,2020,46(12):57-60,66.
文獻標識碼: A
DOI:10.16157/j.issn.0258-7998.200805
中文引用格式: 王淼兒,姚燕. 一種CPT銫原子鐘控制系統(tǒng)的設計[J].電子技術應用,2020,46(12):57-60,66.
英文引用格式: Wang Miaoer,Yao Yan. Design of control system for a CPT Cesium atomic clock[J]. Application of Electronic Technique,2020,46(12):57-60,66.
Design of control system for a CPT Cesium atomic clock
Wang Miaoer,Yao Yan
Collage of Metrology and Testing Engineering,China Jiliang University,Hangzhou 310018,China
Abstract: The realization of coherent population trapping(CPT) atomic clock with miniaturized, low-power is of great significance for its applications in the fields of precision measurement such as communication and position. The peripheral circuit controlling accurate frequency and laser output is the key technology to achieve coherent population trapping atomic clock. A peripheral control system of CPT Cesium atomic clock is developed in this paper. The system uses two levels for fine-tuning and coarse-tuning to drive the VCSEL laser to work, which is more accurate than single current adjustment and uses phase-locked loop circuit to generate modulated microwave signal. PIN diodes are used to adjust the microwave power attenuation in order to realize the adjustment of microwave power. In the meanwhile, software modulation and demodulation methods is applied to replace traditional hardware modulation and demodulation circuits, which saves circuit logic resources.The testing results show that the output of the microwave power reaches -3.33 dBm when the microwave frequency is 4.596 267 GHz. The phase noise of the radio frequency circuit is better than -80 dBc/Hz under the frequency offset of 1 kHz which has better capability.
Key words : coherent population trapping;atomic clock;control system;modulation and demodulation;phase noise
0 引言
1967年國際計量大會將時間單位秒定義為原子秒,時間秒是基于銫原子(133Cs)在其基態(tài)的超精細能級間躍遷頻率(9 192 631 770 Hz)[1]。傳統(tǒng)原子鐘精確度很高,但由于其體積很大,應用范圍較小,1976年ALZETTA C等人發(fā)現(xiàn)粒子數(shù)相干布居囚禁(Coherent Population Trapping,CPT)現(xiàn)象[2],這使原子鐘系統(tǒng)向微型化發(fā)展成為可能[3]。隨著科技發(fā)展,精確定時在水下石油勘探、移動網(wǎng)絡通信和全球定位系統(tǒng)等領域的應用,推動了緊湊型、高性能原子鐘的發(fā)展[4],所以研制具備小型化、低相位噪聲、低功耗、高頻率穩(wěn)定度的原子鐘具有重要意義。而原子鐘外圍控制電路作為原子鐘系統(tǒng)重要組成部分,是實現(xiàn)精準頻率輸出的關鍵。
本文基于相干布居數(shù)囚禁(CPT)原理,設計并研發(fā)了銫原子鐘外圍控制系統(tǒng),包括硬件電路主要模塊設計方案和軟件調制解調算法等,并對電路主要模塊進行相關參數(shù)測試。
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作者信息:
王淼兒,姚 燕
(中國計量大學 計量測試工程學院,浙江 杭州310018)
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