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Optics Letters|May 14, 2021
Reflection-type vapor cell for micro atomic clocks using local anodic bonding of 45° mirrorsHitoshi Nishino, Yuichiro Yano, Motoaki Hara, et al.Optics Letters|November 2, 2020
Frequency ratio of an 115In+ ion clock and a 87Sr optical lattice clockNozomi Ohtsubo, Ying Li, Nils Nemitz, et al.Physical Review Letters|May 21, 2005
Precision spectroscopy and density-dependent frequency shifts in ultracold SrTetsuya Ido, Thomas H Loftus, Martin M Boyd, et al.Science (New York, N.Y.)|December 2, 2006
Optical atomic coherence at the 1-second time scaleMartin M Boyd, Tanya Zelevinsky, Andrew D Ludlow, et al.Physical Review Letters|March 16, 2007
87Sr lattice clock with inaccuracy below 10 -15Martin M Boyd, Andrew D Ludlow, Sebastian Blatt, et al.Optics Express|August 25, 2016
Dissemination of optical-comb-based ultra-broadband frequency reference through a fiber networkShigeo Nagano, Motohiro Kumagai, Ying Li, et al.Physical Review Letters|February 21, 2006
Systematic study of the 87Srclock transition in an optical latticeAndrew D Ludlow, Martin M Boyd, Tanya Zelevinsky, et al.IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|December 4, 2016
Frequency Measurement System of Optical Clocks Without a Flywheel OscillatorMiho Fujieda, Tetsuya Ido, Hidekazu Hachisu, et al.Optics Express|October 6, 2012
Direct comparison of a Ca+ single-ion clock against a Sr lattice clock to verify the absolute frequency measurementKensuke Matsubara, Hidekazu Hachisu, Ying Li, et al.IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|June 2, 2018
Advanced Satellite-Based Frequency Transfer at the 10-16 LevelMiho Fujieda, Sung-Hoon Yang, Tadahiro Gotoh, et al.Pageof 2