Acta Optica Sinica, Volume. 38, Issue 7, 0714002(2018)
Design of Thermal Shield of Optical Cavities for Low Sensitivity to Environmental Temperature Fluctuations
[1] Ludlow A D, Boyd M M, Ye J et al. Optical atomic clocks[J]. Reviews of Modern Physics, 87, 637-701(2015).
[6] Chen J B. Active optical clock[J]. Chinese Science Bulletin, 54, 348-352(2009).
[7] Norcia M A, Winchester M N. Cline J R K, et al. Superradiance on the millihertz linewidth strontium clock transition[J]. Science Advances, 2, e1601231(2016).
[9] Cook S, Rosenband T, Leibrandt D R. Laser-frequency stabilization based on steady-state spectral-hole burning in Eu 3+∶Y2SiO5[J]. Physical Review Letters, 114, 253902(2015).
[12] Jiang Y Y, Ludlow A D, Lemke N D et al. Making optical atomic clocks more stable with 10 -16 -level laser stabilization [J]. Nature Photonics, 5, 158-161(2011).
[19] Mueller G[R]. McNamara P, Thorpe I,
[20] Wang X C, Li S K, Li G et al. Optical Fabry-Pérot cavity system with high thermal stability and high finesse[J]. Acta Optica Sinica, 37, 0112004(2017).
[21] Sun X T, Liu J Q, Zhou J et al. Confocal Fabry-Pérot interferometer for frequency stabilization of laser[J]. Chinses Jounal of Lasers, 35, 1005-1008(2008).
[22] Dai X J, Jiang Y Y, Hang C et al. Thermal analysis of optical reference cavities for low sensitivity to environmental temperature fluctuations[J]. Optics Express, 23, 5134-5146(2015).
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Xueyan Li, Yanyi Jiang, Yuan Yao, Zhiyi Bi, Longsheng Ma. Design of Thermal Shield of Optical Cavities for Low Sensitivity to Environmental Temperature Fluctuations[J]. Acta Optica Sinica, 2018, 38(7): 0714002
Category: Lasers and Laser Optics
Received: Feb. 7, 2018
Accepted: --
Published Online: Sep. 5, 2018
The Author Email: Jiang Yanyi (yyjiang@phy.ecn)