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Quantum computation with ions in thermal motion

Anders Sorensen, Klaus Molmer

quant-pharXiv:quant-ph/9810039

Abstract

We propose an implementation of quantum logic gates via virtual vibrational excitations in an ion trap quantum computer. Transition paths involving unpopulated, vibrational states interfere destructively to eliminate the dependence of rates and revolution frequencies on vibrational quantum numbers. As a consequence quantum computation becomes feasible with ions whos vibrations are strongly coupled to a thermal reservoir.

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