Andrew D. Ludlow, Ph.D.
Affiliations: | Physics | University of Colorado, Boulder, Boulder, CO, United States |
Area:
Optical metrology, Quantum opticsGoogle:
"Andrew Ludlow"Mean distance: 14.39
Parents
Sign in to add mentorJun Ye | grad student | 2008 | CU Boulder | |
(The strontium optical lattice clock: Optical spectroscopy with sub-hertz accuracy.) |
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Publications
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Bothwell T, Hunt BD, Siegel JL, et al. (2025) Lattice Light Shift Evaluations in a Dual-Ensemble Yb Optical Lattice Clock. Physical Review Letters. 134: 033201 |
Bothwell T, Brand W, Fasano R, et al. (2025) Deployment of a transportable Yb optical lattice clock. Optics Letters. 50: 646-649 |
Chen CC, Siegel JL, Hunt BD, et al. (2024) Clock-Line-Mediated Sisyphus Cooling. Physical Review Letters. 133: 053401 |
Burrow OS, Fasano RJ, Brand W, et al. (2023) Optimal binary gratings for multi-wavelength magneto-optical traps. Optics Express. 31: 40871-40880 |
Nakamura T, Davila-Rodriguez J, Leopardi H, et al. (2020) Coherent optical clock down-conversion for microwave frequencies with 10 instability. Science (New York, N.Y.). 368: 889-892 |
Beloy K, McGrew WF, Zhang X, et al. (2020) Modeling motional energy spectra and lattice light shifts in optical lattice clocks Physical Review A. 101 |
Yao J, Sherman JA, Fortier T, et al. (2019) Optical-Clock-Based Time Scale. Physical Review Applied. 12 |
Olson J, Fox RW, Fortier TM, et al. (2019) Ramsey-Bordé Matter-Wave Interferometry for Laser Frequency Stabilization at 10^{-16} Frequency Instability and Below. Physical Review Letters. 123: 073202 |
McGrew WF, Zhang X, Leopardi H, et al. (2019) Towards the optical second: verifying optical clocks at the SI limit Optica. 6: 448 |
Yao J, Sherman JA, Fortier T, et al. (2019) Optical-Clock-Based Time Scale Physical Review Applied. 12 |