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Heating of trapped ions from the quantum ground state

作者:Q. A. Turchette, D. Kielpinski, B. E. King, Dietrich G. Leibfried, D. M. Meekhof, Christopher J. Myatt, M. Rowe, Charles A. Sackett, C. S. Wood, Wayne M. Itano, Christopher R. Monroe, D. J. Wineland · 发表于:Physical Review A · 年份:2000 · DOI:10.1103/physreva.61.063418 · 被引用次数:548 · 研究领域:Cold Atom Physics and Bose-Einstein Condensates、Quantum Information and Cryptography、Quantum Mechanics and Applications

We have investigated motional heating of laser-cooled ${}^{9}{\mathrm{Be}}^{+}$ ions held in radio-frequency (Paul) traps. We have measured heating rates in a variety of traps with different geometries, electrode materials, and characteristic sizes. The results show that heating is due to electric-field noise from the trap electrodes that exerts a stochastic fluctuating force on the ion. The scaling of the heating rate with trap size is much stronger than that expected from a spatially uniform noise source on the electrodes (such as Johnson noise from external circuits), indicating that a microscopic uncorrelated noise source on the electrodes (such as fluctuating patch-potential fields) is a more likely candidate for the source of heating.