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Science (New York, N.Y.)|July 23, 2011
Quantum simulation of frustrated classical magnetism in triangular optical latticesJ Struck, C Ölschläger, R Le Targat, et al.Physical Review Letters|November 15, 2024
Anomalous Subkelvin Thermal Frequency Shifts of Ultranarrow Linewidth Solid State EmittersX Lin, M T Hartman, B Pointard, et al.Optics Express|August 10, 2017
Dispersive heterodyne probing method for laser frequency stabilization based on spectral hole burning in rare-earth doped crystalsO Gobron, K Jung, N Galland, et al.Optics Letters|April 3, 2020
Double-heterodyne probing for an ultra-stable laser based on spectral hole burning in a rare-earth-doped crystalN Galland, N Lučić, S Zhang, et al.The Review of Scientific Instruments|April 9, 2020
Accurate laser frequency locking to optical frequency combs under low-signal-to-noise-ratio conditionsC Guo, M Favier, N Galland, et al.Physical Review Letters|June 4, 2008
New limits on coupling of fundamental constants to gravity using 87Sr optical lattice clocksS Blatt, A D Ludlow, G K Campbell, et al.Science Advances|December 13, 2018
New bounds on dark matter coupling from a global network of optical atomic clocksP Wcisło, P Ablewski, K Beloy, et al.Nature Communications|July 11, 2013
Experimental realization of an optical second with strontium lattice clocksR Le Targat, L Lorini, Y Le Coq, et al.Nature Communications|January 12, 2022
Comparing ultrastable lasers at 7 × 10-17 fractional frequency instability through a 2220 km optical fibre networkM Schioppo, J Kronjäger, A Silva, et al.Physical Review Letters|June 17, 2017
Test of Special Relativity Using a Fiber Network of Optical ClocksP Delva, J Lodewyck, S Bilicki, et al.Pageof 2