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A scalable architecture for quantum computation with molecular nanomagnets
2016
Dalton Transactions
A proposal for a magnetic quantum processor that consists of individual molecular spins coupled to superconducting coplanar resonators and transmission lines is carefully examined. We derive a simple magnetic quantum electrodynamics Hamiltonian to describe the underlying physics. It is shown that these hybrid devices can perform arbitrary operations on each spin qubit and induce tunable interactions between any pair of them. The combination of these two operations ensures that the processor can
doi:10.1039/c6dt02664h
pmid:27711709
fatcat:qsck3khjzvhizlknngbpfh5qki