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Precise control of charged particles in radio-frequency (Paul) traps requires minimising excess micromotion induced by stray electric fields.
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2012
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H. Loh, K. C. Cossel, M. C. Grau, K.-K. Ni, E. R. Meyer, J. L. Bohn, J. Ye, and E. A. Cornell, Precision Spectroscopy of Polarized Molecules in an Ion Trap, Science 342
2013
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2013
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2013
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2013
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2013
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2015
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2015
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2018
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2018
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2019
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A. Mohammadi, J. Wolf, A. Krükow, M. Deiß, and J. Hecker Denschlag, Minimizing rf-induced excess micromotion of a trapped ion with the help of ultracold atoms, Applied Physics B 125
2019
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S. C. Burd, R. Srinivas, J. J. Bollinger, A. C. Wilson, D. J. Wineland, D. Leibfried, D. H. Slichter, and D. T. C. Allcock, Quantum amplification of mechanical oscillator motion, Science 364
2019
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2020
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J. Schmidt, D. Hönig, P. Weckesser, F. Thielemann, T. Schaetz, and L. Karpa, Mass-selective removal of ions from Paul traps using parametric excitation, Applied Physics B 126
2020
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C. Matthiesen, Q. Yu, J. Guo, A. M. Alonso, and H. Häffner, Trapping Electrons in a Room-Temperature Microwave Paul Trap, Physical Review X 11
2021
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