Implementation of NMR quantum computation with para-hydrogen derived high purity quantum states

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We demonstrate the first implementation of a quantum algorithm on a liquid state nuclear magnetic resonance (NMR) quantum computer using almost pure states. This was achieved using a two qubit device where the initial state is an almost pure singlet nuclear spin state of a pair of 1H nuclei arising from a chemical reaction involving para-hydrogen. We have implemented Deutsch's algorithm for distinguishing between constant and balanced functions with a single query.
7 pages RevTex including 6 figures. Figures 4-6 are low quality to save space. Submitted to Phys Rev A

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