2009
Large-scale quantum computation in an anharmonic linear ion trap
G. Lin, S. Zhu, R. Islam, K. Kim, M. Chang, S. Korenblit, C. Monroe, L. Duan
We propose a large-scale quantum computer architecture by stabilizing a single large linear ion chain in a very simple trap geometry. By confining ions in an anharmonic linear trap with nearly uniform spacing between ions, we show that high-fidelity quantum gates can be realized in large linear ion crystals under the Doppler temperature based on coupling to a near-continuum of transverse motional modes with simple shaped laser pulses.