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Experimental Hamiltonian Learning of an 11-Qubit Solid-State Quantum Spin Register
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作者 P.-Y.Hou L.He +7 位作者 F.wang X.-Z.Huang w.-G.Zhang X.-L.Ouyang X.wang w.-q.lian X.-Y.Chang L.-M.Duan 《Chinese Physics Letters》 SCIE CAS CSCD 2019年第10期11-16,共6页
Learning the Hamiltonian of a quantum system is indispensable for prediction of the system dynamics and realization of high fidelity quantum gates.However,it is a significant challenge to efficiently characterize the ... Learning the Hamiltonian of a quantum system is indispensable for prediction of the system dynamics and realization of high fidelity quantum gates.However,it is a significant challenge to efficiently characterize the Hamiltonian which has a Hilbert space dimension exponentially growing with the system size.Here,we develop and implement an adaptive method to learn the effective Hamiltonian of an 11-qubit quantum system consisting of one electron spin and ten nuclear spins associated with a single nitrogen-vacancy center in a diamond.We validate the estimated Hamiltonian by designing universal quantum gates based on the learnt Hamiltonian and implementing these gates in the experiment.Our experimental result demonstrates a well-characterized 11-qubit quantum spin register with the ability to test quantum algorithms,and shows our Hamiltonian learning method as a useful tool for characterizing the Hamiltonian of the nodes in a quantum network with solid-state spin qubits. 展开更多
关键词 HAMILTONIAN QUANTUM system
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