Acta Photonica Sinica, Volume. 52, Issue 1, 0106002(2023)
Noise Suppression of Frequency Transfer on Short-distance Optical Fiber Link Based on 3×3 Fiber Coupler
[1] T P HEAVNER, E A DONLEY, F LEVI et al. First accuracy evaluation of NIST-F2. Metrologia, 51, 174-182(2014).
[2] S L CAMPBELL, R B HUTSON, G E MARTI et al. A fermi-degenerate three-dimensional optical lattice clock. Science, 358, 90-94(2017).
[3] Shaowu DONG, Yanping WANG, Wenjun WU et al. Progress of TAI and timekeeping work in NTSC. Journal of Time and Frequency, 41, 73-79(2018).
[4] E SAMAIN. Clock comparison based on laser ranging technologies. International Journal of Modern Physics D, 24, 1530021(2015).
[5] Sen MENG, Wenge GUO, Wenyu ZHAO et al. 9.2 GHz microwave frequency transmission via 50 km optical fiber. Acta Photonica Sinica, 44, 0706003(2015).
[6] Cuichen ZHAO, Wenyu ZHAO, Wenxiang XUE et al. Microwave frequency dissemination via 50 km optical fiber based on optical delay compensation. Acta Photonica Sinica, 49, 0806002(2020).
[7] Honglei QUAN, Wenyu ZHAO, Wenxiang XUE et al. High-resolution microwave frequency dissemination via 56 km optical fiber based on microwave phase compensation. Acta Photonica Sinica, 50, 0406003(2021).
[8] O LOPEZ, A MY-KLEIN, M LOURS et al. High-resolution microwave frequency dissemination on an 86-km urban optical link. Applied Physics B, 98, 723-727(2010).
[9] B NING, S Y ZHANG, D HOU et al. High-precision distribution of highly stable optical pulse trains with 8.8×10-19 instability. Scientific Reports, 4, 1-6(2014).
[10] S M F RAUPACH, A KOCZWARA, G GROSCHE. Brillouin amplification supports 1×10-20 uncertainty in optical frequency transfer over 1 400 km of underground fiber. Physical Review A, 92, 1-5(2015).
[11] K PREDEHL, G GROSCHE, S M F RAUPACH et al. A 920-kilometer optical fiber link for frequency metrology at the 19th decimal place. Science, 336, 441-444(2012).
[12] H JIANG, F KEFELIAN, S CRANE et al. Long-distance frequency transfer over an urban fiber link using optical phase stabilization. Optical Society of America B, 25, 2029-2035(2008).
[13] A BERCY, F STEFANI, O LOPEZ et al. Two-way optical frequency comparisons at 5×10-21 relative stability over 100-km telecommunication network fibers. Physical Review A, 1(2014).
[14] S DROSTE, F OZIMEK, T UDEM et al. Optical-frequency transfer over a single-span 1 840 km fiber link. Physical Review Letters, 111, 110801(2013).
[15] C E CALOSSO, E BERTACCO, D CALONICO et al. Frequency transfer via a two-way optical phase comparison on a multiplexed fiber network. Optics Letters, 39, 1177-1180(2014).
[16] K S SANG. Optical fiber interferometers with [3×3] directional couplers: analysis. Journal of Applied Physics, 52, 3865-3872(1981).
[17] G P RICHARD. Analysis of fiber interferometer utilizing 3×3 fiber coupler. IEEE Journal of Quantum Electronics, 18, 1601-1603(1982).
[18] F SCHLIEP, R HERETH, G SCHIFFNER. Phase sensitive investigations of 3×3 singlemode fibre directional couplers. Electronics Letters, 29, 68-70(1993).
[19] M D TODD, M SEAVER, E BUCHOLTR. Improved operationally-passive interferometric demodulation method using 3×3 coupler. Electronics Letters, 38, 784-786(2002).
[20] J P BENJAMIN, L MATTHIAS, M OLAF et al. FOKUS II - Space flight of a compact and vacuum compatible dual frequency comb system. Journal of the Optical Society of America B, 38, 932-939(2021).
[21] Yaoli YUE, Pengfei LIU, Chao TANG. Phase-stabilized transmission technology of optical fiber based on fringes counting method of optical fiber interferometer. Optical Communication Technology, 45, 22-25(2021).
[22] Jianfei WANG, Xiao WANG, Hong LUO et al. Influence of rotation angle and working wavelengths of faraday rotation mirror on single-mode fiber optics Michelsoninterferometer. Chinese Journal of Lasers, 37, 1042-1046(2010).
Get Citation
Copy Citation Text
Zhenyuan HU, Yaoli YUE, Yanyan ZHANG, Shuaihe GAO, Xiguang YANG, Ming SUI, Zhibing PAN, Shougang ZHANG, Yang LI. Noise Suppression of Frequency Transfer on Short-distance Optical Fiber Link Based on 3×3 Fiber Coupler[J]. Acta Photonica Sinica, 2023, 52(1): 0106002
Category: Fiber Optics and Optical Communications
Received: Jul. 4, 2022
Accepted: Aug. 22, 2022
Published Online: Feb. 27, 2023
The Author Email: ZHANG Shougang (szhang@ntsc.ac.cn)