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On the role of entanglement in quantum-computational speed-up
2003
Proceedings of the Royal Society A
For any quantum algorithm operating on pure states we prove that the presence of multi-partite entanglement, with a number of parties that increases unboundedly with input size, is necessary if the quantum algorithm is to offer an exponential speed-up over classical computation. Furthermore we prove that the algorithm can be classically efficiently simulated to within a prescribed tolerance \eta even if a suitably small amount of global entanglement (depending on \eta) is present. We explicitly
doi:10.1098/rspa.2002.1097
fatcat:liumy3ishzbbjmuz35f5hxbvaa