Sympathetic Cooling of 40 Ca + − 27 Al + Ion Pair Crystal in a Linear Paul Trap
Author:
Publisher
IOP Publishing
Subject
General Physics and Astronomy
Link
https://iopscience.iop.org/article/10.1088/0256-307X/33/10/103701/pdf
Reference27 articles.
1. Frequency Comparison of Two High-AccuracyAl+Optical Clocks
2. Sr88+single-ion optical clock with a stability approaching the quantum projection noise limit
3. Frequency Ratio of Two Optical Clock Transitions inYb+171and Constraints on the Time Variation of Fundamental Constants
4. Hertz-level measurement of the40Ca+4s2S1/2–3d2D5/2clock transition frequency with respect to the SI second through the Global Positioning System
5. Frequency Ratio of Al + and Hg + Single-Ion Optical Clocks; Metrology at the 17th Decimal Place
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1. Absolute frequency measurement of molecular iodine hyperfine transitions at 554 nm and its application to stabilize a 369 nm laser for Y b+ ions cooling;Chinese Journal of Physics;2023-12
2. Erratum: “Sub-kelvin temperature management in ion traps for optical clocks” [Rev. Sci. Instrum. 91, 111301 (2020)];Review of Scientific Instruments;2023-08-01
3. Parameter Optimization of Laser Cooling of Strontium Ions without a Luminescence Signal;Physics of Atomic Nuclei;2022-12
4. Sympathetic electromagnetically-induced-transparency ground state cooling of a 40Ca+-27Al+ pair in a 27Al+ clock;Chinese Physics B;2022-11-17
5. Efficiently loading 40Ca+–27Al+ ion crystal using sympathetic cooling and pulsed laser ablation;Review of Scientific Instruments;2022-11-01
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