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Experimental Hamiltonian Learning of an 11-Qubit Solid-State Quantum Spin Register

Experimental Hamiltonian Learning of an 11-Qubit Solid-State Quantum Spin Register
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摘要 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. 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.
作者 P.-Y.Hou L.He F.Wang X.-Z.Huang W.-G.Zhang X.-L.Ouyang X.Wang W.-Q.Lian X.-Y.Chang L.-M.Duan 侯攀宇;何丽;王飞;黄晛之;张文纲;欧阳晓龙;王歆;连文倩;常秀英;段路明(Center for Quantum Information, Institute for Interdisciplinary Information Sciences, Tsinghua University)
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2019年第10期11-16,共6页 中国物理快报(英文版)
基金 Supported by the Frontier Science Center for Quantum Information of the Ministry of Education of China,Tsinghua University Initiative Scientific Research Program,and the National Key Research and Development Program of China(2016YFA0301902)
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