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Measuring entangled qutrits and their use for quantum bit commitment
N K Langford1, R B Dalton, M D Harvey
1Department of Physics, University of Queensland, Brisbane, QLD 4072, Australia.
Abstract:
We produce and holographically measure entangled qudits encoded in transverse spatial modes of single photons. With the novel use of a quantum state tomography method that only requires two-state superpositions, we achieve the most complete characterization of entangled qutrits to date. Ideally, entangled qutrits provide better security than qubits in quantum bit commitment: we model the sensitivity of this to mixture and show experimentally and theoretically that qutrits with even a small amount of decoherence cannot offer increased security over qubits.
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