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- W2008958306 abstract "Measurement-based quantum computation utilizes an initial entangled resource state and proceeds with subsequent single-qubit measurements. It is implicitly assumed that the interactions between qubits can be switched off so that the dynamics of the measured qubits do not affect the computation. By proposing a model spin Hamiltonian, we demonstrate that measurement-based quantum computation can be achieved on a thermal state with always-on interactions. Moreover, computational errors induced by thermal fluctuations can be corrected and thus the computation can be executed fault-tolerantly if the temperature is below a threshold value." @default.
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- W2008958306 date "2011-08-01" @default.
- W2008958306 modified "2023-09-23" @default.
- W2008958306 title "Thermal States as Universal Resources for Quantum Computation with Always-On Interactions" @default.
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- W2008958306 doi "https://doi.org/10.1103/physrevlett.107.060501" @default.
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