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Trapped atomic ions have been successfully used for demonstrating basic elements of universal quantum information processing (QIP).
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Sørensen, A. & Mølmer, K. Entanglement and quantum computation with ions in thermal motion. Phys. Rev. A
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Milburn, G. J. Schneider, S. & James, D. F. V. Ion trap quantum computing with warm ions. Fortschr. Phys
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Mintert, F. & Wunderlich, C. Ion-Trap Quantum Logic Using Long-Wavelength Radiation. Phys. Rev. Lett
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Kielpinski, D. et al
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Vitanov, N. V. Fleischhauer, M. Shore, B. W. & Bergmann, K. Coherent manipulation of atoms and molecules by sequential laser pulses. Adv. At. Mol. Phys
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Wunderlich, C. in Laser Physics at the Limit
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Hannemann, T. et al
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Wunderlich, C. & Balzer, C. Quantum measurements and new concepts for experiments with trapped ions. Adv. At. Mol. Phys
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Mc Hugh, D. & Twamley, J. Quantum computer using a trapped-ion spin molecule and microwave radiation. Phys. Rev. A
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Häffner, H. et al
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Blatt, R. & Wineland, D. Entangled states of trapped atomic ions. Nature
2008
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Wang, S. X. Labaziewicz, J. Ge, Y. Shewmon, R. & Chuang, I. L. Individual addressing of ions using magnetic field gradients in a surface-electrode ion trap. Appl. Phys. Lett
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Johanning, M. et al
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Home, J. P. et al
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Rabl, P. et al
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Kim, K. et al
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Friedenauer, A. Schmitz, H. Glueckert, J. T. Porras, D. & Schaetz, T. Simulating a quantum magnet with trapped ions. Nat Phys
2008
Cited alongside, same era.
Ospelkaus, C. et al
2008
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Clarke, J. & Wilhelm, F. K. Superconducting quantum bits. Nature
2008
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Johanning, M. Varón, A. F. & Wunderlich, C. Quantum simulations with cold trapped ions. J. Phys. B
2009
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Simon, C. et al
2010
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Bluhm, H. et al
2011
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2011
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